Publications

ARMENGAUD E., AUGIER C., BARABASH A., BEEMAN J., BEKKER T., BELLINI F., BENOIT A., BERGE L., BERGMANN T., BILLARD J., BOIKO R., BRONIATOWSKI A., BRUDANIN V., CAMUS P., CAPELLI S., CARDANI L., CASALI N., CAZES A., CHAPELLIER M., CHARLIEUX F., CHERNYAK D., DE COMBARIEU M., CORON N., DANEVICH F., DAFINEI I., DE JESUS M., DEVOYON L., DI DOMIZIO S., DUMOULIN L., EITEL K., ENSS C., FERRONI F., FLEISCHMANN A., FOERSTER N., GASCON J., GASTALDO L., GIRONI L., GIULIANI A., GRIGORIEVA V., GROS M., HEHN L., HERVE S., HUMBERT V., IVANNIKOVA N., IVANOV I., JIN Y., JUILLARD A., KLEIFGES M., KOBYCHEV V., KONOVALOV S., KOSKAS F., KOZLOV V., H. KRAUS, KUDRYAVTSEV V., LAUBENSTEIN M., LE SUEUR H., LOIDL M., MAGNIER P., MAKAROV E., MANCUSO M., DE MARCILLAC P., MARNIEROS S., MARRACHE-KIKUCHI C., NAGORNY S., NAVICK X-F., NIKOLAICHUK M., NONES C., NOVATI V., OLIVIERI E., PAGNANINI L., PARI P., PATTAVINA L., PAVAN M., PAUL B., PENICHOT, PESSINA G., PIPERNO G., PIRRO S., PLANTEVIN O., PODAA D., QUEGUINER E., REDON T., RODRIGUES M., ROZOV S., RUSCONI C., SANGLARD V., SCHÄFFNER K., SCORZA S., SHLEGEL V., SIEBENBORN B., STRAZZER O., TCHERNIAKHOVSKI D., TOMEI C., TRETYAK V., UMATOV V., VAGNERON L., VASILIEV Y., VELAZQUEZ M., VIGNATI M., WEBER M., YAKUSHEV E., ZOLOTAROVA A., “Development of 100Mo-containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search”, European Physical Journal, 77, 785, DOI:10.1140/epjc/s10052-017-5343-2

BOBIN C., THIAM C., CHAUVENET B., “A radionuclide calibrator based on Cherenkov counting for activity measurements of high-energy pure β¯-emitters”, Applied Radiation and Isotopes, 119, 2017, 60-65, DOI:10.1016/j.apradiso.2016.10.018

CACCIA B., LE ROY M., BLIDEANU V., ANDENNA C., ARUN C., CZARNECKI D., EL BARDOUNI T., GSCHWIND R., HUOT N., MARTIN E., ZINK K., ZOUBAIR M., PRICE R., DE CARLAN L., “EURADOS intercomparison exercise on Monte Carlo modelling of a medical linear accelerator”, Annali dell'Istituto Superiore Di Sanita, 53, 2017, 314-321, DOI:10.4415/ANN_17_04_07

CASSETTE P., NOTARI F., LÉPY M-C, CAPLAN C., PIERRE S., HAINSCHWANG T., FRITSCH E., “Residual radioactivity of treated green diamonds”, Applied Radiation and Isotopes, 126, 2017, 66-72, DOI:10.1016/j.apradiso.2017.01.026

CHAUVENET B., BOBIN C., BOUCHARD J., “A general dead-time correction method based on live-time stamping. Application to the measurement of short-lived radionuclides”, Applied Radiation and Isotopes, 130, 2017, 238-244, DOI:10.1016/j.apradiso.2017.10.013

DIONI L., GRESSIER V., NARDIN G., JACQMIN R., STOUT B., SUMINI M., “Tests of a solution-grown stilbene scintillator in mono-energetic neutron beams of 565 keV and 5 MeV”, Nuclear Inst. and Methods in Physics Research, A 880, 2017, 210–215

DULIEU C., KELLETT M., MOUGEOT X., “Dissemination and visualisation of reference decay data from Decay Data Evaluation Project (DDEP)”, EPJ Web of Conferences, 146, 2017, 07004, 4, DOI:10.1051/epjconf/201714607004

GARCÍA-TORAÑO E., PEYRES V., BÉ M.-M., DULIEU C., LÉPY M-C, SALVAT F., “Simulation of decay processes and radiation transport times in radioactivity measurements”, Nuclear Instruments and Methods in Physics Research, B 396,2017,  43-49, DOI:10.1016/j.nimb.2017.02.002

HAN F., BAHAIN J-J., DENG C., BOËDA É., HOU Y., WEI G., HUANG W., GARCIA T., SHAO Q., HE C., FALGUÈRES C., VOINCHET P., YIN G., “The earliest evidence of hominid settlement in China: Combined electron spin resonance and uranium series (ESR/U-series) dating of mammalian fossil teeth from Longgupo cave”, Quaternary International, 434, 2017, 75-83, DOI:10.1016/j.quaint.2015.02.025

KELLETT M. A., “The Decay Data Evaluation Project (DDEP) and the JEFF-3.3 Radioactive Decay Data Library: Combining International Collaborative Efforts on Evaluated Decay Data”, EPJ Web of Conferences, 146, 2017, 02009, 6, DOI:10.1051/epjconf/201714602009

LÉPY M.-C., PEARCE A., SIMA O., “Uncertainties in gamma-ray spectrometry [Corrigendum]”, Metrologia, 54, 2017, DOI:10.1088/1681-7575/aa853b

LÉPY M-C., PIERRE S., “Photon emission intensities in the decay of U-235”, Applied Radiation and Isotopes, 126, 2017, 150-153, DOI:10.1016/j.apradiso.2016.12.045

MARINGER F. J., BAUMGARTNER A., CARDELLINI F., CASSETTE P., CRESPO T., JULIAN DEAN T., HANNAH WIEDNER T., HŮLKA J., HULT M., JEROME S., KABRT F., KOVÁŘ P., LARIJANI C., LUTTER G., MAROULI M., MAURING A., MAZÁNOVÁ M., MICHALIK B., MICHIELSEN N., PEYRES V., PIERRE S., PÖLLÄNEN R., POMMÉ S., REIS M., STIETKA M., SZÜCS L., VODENIK B., “Advancements in NORM metrology – Results and impact of the European joint research project MetroNORM”, Applied Radiation and Isotopes; 126, 2017, 273-278, DOI:10.1016/j.apradiso.2017.02.040

MÉNESGUEN Y., BOYER B., ROTELLA H., LUBECK J., WESER J., BECKHOFF B., GRÖTZSCH D., KANNGIEßSER B., NOVIKOVA A., NOLOT E., LÉPY M-C., “CASTOR, a new instrument for combined XRR-GIXRF analysis at SOLEIL”, X-Ray Spectrometry, 46, 2017, 303-308, DOI:10.1002/xrs.2742

MITEV K., CASSETTE P., JORDANOV V., LIU H., DUTSOV C., “Design and performance of a miniature TDCR counting system”, Journal of Radioanalytical and Nuclear Chemistry, 314, 2017, 583-589, DOI:10.1007/s10967-017-5451-3

MOIGNIER C., TROMSON D., MARSOLAT F., DE MARZI L., GARCÍA HERNÁNDEZ J. C., AGELOU M., POMORSKI M., WOO R., BOURBOTTE J-M., MOIGNAU F., MAZAL A., LAZARO D  Development of a synthetic single crystal diamond dosimeter for dose measurement of clinical proton beams, Physics in Medicine and Biology,;62, June 2017, 13, 5417-5439, DOI: 10.1088/1361-6560/aa70cf

MOUGEOT X., “BetaShape: A new code for improved analytical calculations of beta spectra”, EPJ Web of Conferences, 146, 2017, 12015, 4, DOI:10.1051/epjconf/201714612015

RIFFAUD J., LÉPY M-C., MÉNESGUEN Y., NOVIKOVA A., “Measurement of K fluorescence yields of niobium and rhodium using monochromatic radiation”, X-Ray Spectrometry, 46, 2017, 341-346 DOI:10.1002/xrs.2757

RODRIGUES M., LOIDL M., MARIAM R., “A metallic magnetic calorimeter dedicated to the spectrometry of X-rays emitted by actinides”, EPJ Web of Conferences, 146, 2017, 10012, 4,. DOI:10.1051/epjconf/201714610012

ROTELLA H., B. CABY, Y. MÉNESGUEN, Y. MAZEL, A. VALLA, D. INGERLE, B. DETLEFS, M.-C. LÉPY, A. NOVIKOVA, G. RODRIGUEZ, C. STRELI, E. NOLOT, “Elemental depth profiling in transparent conducting oxide thin film by X-ray reflectivity and grazing incidence X-ray fluorescence combined analysis”, Spectrochimica Acta Part B, 135, 22-28, DOI:10.1016/j.sab.2017.06.011

TAMPON B., SANTOS D., GUILLAUDIN O., MURAZ J.-F., LEBRETON L., VINCHON T., QUERRE P., “Ionization Quenching Factor measurement of 1 keV to 25 keV protons in Isobutane gas mixture”, EPJ Web of Conferences, 153, 2017, 01014

THIAM C., BOBIN C., BOUCHARD J., “Adaptation of PTB’s analytical modelling for TDCR–Cherenkov activity measurements at LNHB”, Journal of Radioanalytical and Nuclear Chemistry, 314, 2017, 591-597, DOI:10.1007/s10967-017-5381-0

Communications

KELLETT M. A., DULIEU C., MOUGEOT X., “The use of recommended decay data from the DDEP for activity determinations using LSC”, 23rd International Conference on Advances in Liquid Scintillation Spectrometry, Copenhagen, Denmark; 1-5 May 2017

BOBIN C., THIAM C., BOUCHARD J., “Standardization of 68Ge/68Ga using the 4pi beta gamma coincidence method based on Cherenkov counting”, 21st International Conference on Radionuclide Metrology and its Applications; Buenos Aires, Argentina; 15-19 May 2017

KOSSERT K., MARGANIEC-GAŁĄZKA J., MOUGEOT X., NÄHLE O., “Activity determination of 60Co and the importance of its beta spectrum”, 21st International Conference on Radionuclide Metrology and its Applications, Buenos Aires, Argentina; 15-19 May 2017

LÉPY M.-C., MÉNESGUEN Y., RIFFAUD J., “Consistency of photon emission intensities for efficiency calibration of gamma-ray spectrometers in the energy range from 20 keV to 80 keV, 21st International Conference on Radionuclide Metrology and its Applications, Buenos Aires, Argentina; 15-19 May 2017

LOIDL M., RODRIGUES M., “Direct measurement of the electron capture probability ratios of Fe-55”, 21st International Conference on Radionuclide Metrology and its Applications, Buenos Aires, Argentina; 15-19 May 2017

MOUGEOT X., “A new code for improved calculations of electron capture transitions”, 21st International Conference on Radionuclide Metrology and its Applications, Buenos Aires, Argentina; 15-19 May 2017

RIFFAUD J., CASSETTE P., LACOUR D., LOURENÇO V., TARTÈS I., KELLETT M., CORBEL M., LÉPY M-C., DOMERGUE C., DESTOUCHES C., CARCREFF H., VIGNEAU O., “Measurement of Rh-103mX-ray emission intensities and evaluation od the decay scheme”, 21st International Conference on Radionuclide Metrology and its Applications, Buenos Aires, Argentina; 15-19 May 2017

BORDY J-M., “Précision sur la méthode d’évaluation de l’équivalent de dose individuel au cristallin, Hp(3), à partir de l’équivalent de dose individuel corps entier, Hp(10)”, Congrés National de la SFRP SFRP 2017; Lille, France; 7-9 Juin 2017

MARIAM R. S., RODRIGUES M., LOIDL M., “Total efficiency calibration of a metallic magnetic calorimeter detector for photon spectrometry below 100 keV”, 17th International Workshop on Low Temperature Detectors, Kurume, Japan; 17-20 July 2017

RODRIGUES M., LOIDL M., MARIAM R., NAVICK X-F., “Development of total decay energy spectrometry of alpha emitters using Metallic Magnetic Calorimeters”, 17th International Workshop on Low Temperature Detectors, Kurume, Japan; 17-20 July 2017

LOIDL M., BEYER J., BOCKHORN L., ENSS C., GYÖRI D., KEMPF S., KOSSERT K., MARIAM R., NÄHLE O., PAULSEN M., RODRIGUES M., SCHMIDT M., “MetroBeta: Beta spectrometry with metallic magnetic calorimeters in the framework of the European Program of Ionizing Radiation Metrology”, 17th International Workshop on Low Temperature Detectors, Kurume, Japan; 17-20 July 2017

NAVICK X.-F., BOUVILLE D., CORON N., GIULIANI A., LOIDL M., DE MARCILLAC P., NONES C., PÉNICHOT Y., REDON T., RODRIGUES M., ZOLOTAROVA A., “NTD-Ge production in the LUMINEU experiment using cryogenic detectors for Rare Events searches and other applications”, 17th International Workshop on Low Temperature Detectors, Kurume, Japan; 17-20 July 2017

Publications

BOBIN C., THIAM C., BOUCHARD J., “Standardization of 68Ge/68Ga using the 4πβ−γ coincidence method based on Cherenkov counting”, Applied Radiation and Isotopes, 134, 2018, 252-256, DOI : 10.1016/j.apradiso.2017.06.044

BORDY J.-M., LE ROY M, "Processus de mesure : Evaluer les incertitudes 20 exemples  - Rayonnement ionisant", CFM-AFNOR : Les Guides techniques du collège Français de Métrologie, 2018, 96-103 & 104-111, ISBN 978-2-12-465685-1.

BORDY J.-M., “New data regarding the lens of the eye (for radiation protection purposes)”, Radiation protection, 187, EU seminar May 2017" Emerging issues with regard to organ doses", 35-43, ISBN 978-92-79-93514-5,DOI :  10.2833/104208.

CASSETTE P., ALTZITZOGLOU T., ANTOHE A., ROSSI M., ARINC A., CAPOGNI M., GALEA R., GUDELIS A., KOSSERT K., LEE K.B., LIANG J., NEDJADI Y., OROPESA VERDECIA P., SHILNIKOVA T., VAN WYNGAARDT W., ZIEMEK T., ZIMMERMAN B., “Results of the CCRI(II)-S12.H-3 supplementary comparison : Comparison of methods for the calculation of the activity and standard uncertainty of a tritiated-water source measured using the LSC-TDCR method”, Applied Radiation and Isotopes, 134, 2018, 257-262, DOI : 10.1016/j.apradiso.2017.07.007.

CESSNA J.T., FITZGERALD R., ZIMMERMAN B.E., LAUREANO-PÉREZ L., BERGERON D.E., VAN WYNGAARDT F., SMITH M., JACKSON T., HOWE B., DA SILVA C.J., IWAHARA A., DA CRUZ P.A.L., ZHANG M., LIU H., LIANG J., FRÉCHOU C., BOBIN C., CASSETTE P., KOSSERT K., NÄHLE O., MARGANIEC-GAŁĄZKA J., JOSEPH L., RAVINDRA A., KULKARNI D.N., YUNOKI A., SATO Y., LEE K.B., LEE J.M., GUNG A, DZIEL T ., L ISTKOWSKA A ., T YMIŃSKI Z ., AHAGIA M . S, A NTOHE A., IOAN M .-R., LUCA A., KRIVOSEK M., OMETAKOVA J., JAVORNIK A., ZALESAKOVA M., GARCÍA-TORAÑO MARTINEZ E., ROTETA M., MEJUTO M., NEDJADI Y., JUGET F., YUAN M. - C., YEH C.Y., YELTEPE E., DIRICAN A., KEIGHTLEY J., PEARCE A., “Results of an international comparison of activity measurements of 68Ge”, Applied Radiation and Isotopes, 134, 2018, 385-390, DOI : 10.1016/j.apradiso.2017.10.052.

DUSCIAC D., BORDY J.-M., BLIDEANU V., “Training comparison of the 14RPT04 ABSORB : Absorbed dose in water and air”, INIS, 49, 2018, CEA Report CEA-R-6501.

GARCÍA-TORAÑO E., ALTZITZOGLOU T., AUERBACH P., BÉ M.M., BOBIN C., CASSETTE P., CHARTIER F., DERSCH R., FERNÁNDEZ M., ISNARD H., KOSSERT K., LOURENÇO V., NÄHLE O., NONELL A., PEYRÉS V., POMMÉ S., ROZKOV A., SÁNCHEZ-CABEZUDO A., SOCHOROVÁ J. “The half-life of 129I”, Applied Radiation and Isotopes, 140, 2018, 157-162, DOI : 10.1016/j.apradiso.2018.06.007.

HAYEN L., SEVERIJNS N., BODEK K., ROZPEDZIK D., MOUGEOT X., "High precision analytical description of the allowed spectrum shape", Reviews of Modern Physics, 90, 2018, 015008, DOI :  10.1103/RevModPhys.90.015008

HERMANNE A., IGNATYUK A.V., CAPOTE R., CARLSON B.V., ENGLE J.W., KELLETT M.A., KIBÉDI T., KIM G., KONDEV F.G., HUSSAIN M., LEBEDA O., LUCA A., NAGAI Y., NAIK H., NICHOLS A.L., NORTIER F.M., SURYANARAYANA S.V., TAKÁCS S., TÁRKÁNYI F.T., VERPELLI M., “Reference Cross Sections for Charged-particle Monitor Reactions”, Nuclear Data Sheets, 148, 2018, 338-382, DOI : 10.1016/j.nds.2018.02.009.

JEAN-BAPTISTE P., FOURRÉ E., CASSETTE P., “New determination of the 3He mixing ratio in the Earth's lower atmosphere from an international tritium intercomparison exercise”, Applied Geochemistry, 98, 2018, 17-21, DOI : 10.1016/j.apgeochem.2018.09.003.

JORDANOV V., CASSETTE P., DUTSOV CH., MITEV K., “Development and applications of a miniature TDCR acquisition system for in-situ radionuclide metrology”, Nuclear Instruments and Methods A : Accelerators, Spectrometers, Detectors and Associated Equipment, 2018, DOI : 10.1016/j.nima.2018.09.037.

KOSSERT K., MARGANIEC-GAŁĄZKA J., MOUGEOT X., NÄHLE O.J., “Activity determination of 60Co and the importance of its beta spectrum”, Applied Radiation and Isotopes, 134, 2018, 212-218, DOI : 10.1016/j.apradiso.2017.06.015.

LÉPY M.-C., BRONDEAU L., MÉNESGUEN Y., PIERRE S., RIFFAUD J., “Consistency of photon emission intensities for efficiency calibration of gamma-ray spectrometers in the energy range from 20 keV to 80 keV”, Applied Radiation and Isotopes, 134, 2018, 131-136, DOI : 10.1016/j.apradiso.2017.07.006.

MÉNESGUEN Y., LÉPY M.-C., HÖNICKE P., MÜLLER M., UNTERUMSBERGER R., BECKHOFF B., HOSZOWSKA J., DOUSSE J.-C., BŁACHUCKI W., ITO Y., YAMASHITA M., FUKUSHIMA S., “Experimental determination of the x-ray atomic fundamental parameters of nickel”, Metrologia, 55, 2018, 56-66, DOI : 10.1088/1681-7575/aa9b12.

MÉNESGUEN Y., LÉPY M.-C.,   SAMPAIO J M,  MARQUES J P,  PARENTE F,  GUERRA M,  INDELICATO P AND SANTOS  J P, “Experimental and theoretical determination of the L-fluorescence yields of bismuth”, Metrologia, 55, 2018, 621-630, DOI : 10.1088/1681-7575/aad1d6.

MÉNESGUEN Y., LÉPY M.-C.,  SAMPAIO J. M., MARQUES J. P.,  PARENTE F., GUERRA M., INDELICATO P., SANTOS J. P., HÖNICKE P., BECKHOFF B., "A combined experimental and theoretical approach to determine X-ray atomic fundamental quantities of tin”, X-Ray Spectrometry, 47, 2018, 341-351, DOI : 10.1002/xrs.2948.

MÉNESGUEN Y., LÉPY M.-C., BECKHOFF B., “New Measurements of X-ray Fundamental Parameters”, Spectroscopy, 33, 7, 2018, 24-38.

MÉNESGUEN Y., DULIEU C., LÉPY M.-C., “Advances in the measurements of the mass attenuation coefficients”, X-Ray Spectrometry, 2018, DOI : 10.1002/xrs.2991.

MITEV K., CASSETTE P., TARTÈS I., GEORGIEV S., DIMITROVA I., PRESSYANOV D., “Diffusion lengths and partition coefficients of 131mXe and 85Kr in Makrofol N and Makrofol DE polycarbonates”, Applied Radiation and Isotopes, 134, 2018, 269-274, DOI : 10.1016/j.apradiso.2017.07.023.

MOUGEOT X., "Improved calculations of electron capture transitions for decay data and radionuclide metrology", Applied Radiation and Isotopes, 134, 2018, 225-232, DOI : 10.1016/j.apradiso.2017.07.027.

ODZIOMEK M., CHAPUT F., DUJARDIN C., LEROUGE F., CASSETTE P., SITARZ M., AND PAROLA S., “Design and Application of High Optical Quality YAG:Ce Nanocrystal-Loaded Silica Aerogels”, ACS Applied Materials & Interfaces, 10, 2018, 38, DOI: 10.1021/acsami.8b09229.

OTTO T., HERTEL N.E., BARTLETT D.T., BEHRENS R.,. BORDY J.-M, DIETZE G., ENDO A., GUALDRINI G., PELLICCIONI M., “The ICRU proposal for new operational quantities for external radiation”, Radiation Protection Dosimetry, 180, 2018, 10-16, DOI : 10.1093/rpd/ncx243.

PESSOAA W.,  ROULE A., NOLOT E.,  MAZEL Y.,  BERNARD M.,  LÉPY M.-C.,  MÉNESGUEN Y., NOVIKOVA A., GERGAUD P., BRIGIDI F., EICHERTD D., “Grazing incident X-ray fluorescence combined with X-ray reflectometry metrology protocol of telluride-based films using in-lab and synchrotron instruments”, Spectrochimica Acta Part B, 149, 2018, 143-149, DOI : 10.1016/j.sab.2018.07.003.

PIERRE S., SABOT B., CASSETTE P., LIANG J., COURTE S., FERREUX L., RATEL G., “Bias in the measurement of radon gas using ionization chambers : Application to SIR”, Applied Radiation and Isotopes, 134, 2018, 13-17, DOI : 10.1016/j.apradiso.2017.10.040.

PIMPINELLA M., CAPORALI C., GUERRA A. S., SILVI L., DE COSTE V., PETRUCCI A., DELAUNAY F., DUFRENEIX S., GOURIOU J., OSTROWSKY A., RAPP B., BORDY J. M., DAURES J., LE ROY M., SOMMIER L., VERMESSE D., “Feasibility of using a dose-area product ratio as beam quality specifier for photon beams with small field sizes”, Physica Medica, 45, 2018, 106-116, DOI : 10.1016/j.ejmp.2017.12.012.

RIFFAUD J., CASSETTE P., LACOUR D., LOURENÇO V., TARTÈS I., KELLETT M.A., CORBEL M., LÉPY M.-C., DOMERGUE C., DESTOUCHES C., CARCREFF H., VIGNEAU O., “Measurement of absolute K X-Rays emission intensities in the decay of 103m Rh”, Applied Radiation and Isotopes, 134, 2018, 399-405, DOI : 10.1016/j.apradiso.2017.10.003.

Communications

PAPAEVANGELOU T. ET AL., “ESS nBLM: Beam Loss Monitors based on Fast Neutron Detection”, 61e ICFA Advanced Beam Dynamics Workshop on High-Intensity and High-Brightness Hadron Beams, Daejeon, Corée du Sud, 17-22 juin 2018, DOI : 10.18429/JACoW-HB2018-THA1WE04.

ABUDRAA A., GOURIOU J., STIEN C., PLAGNARD J., DENOZIÈRE M., ITTI R., CHAUVENET B., AUBINEAU-LANIÈCE I., “Establishment and transfer of a primary dosimetry standard for breast cancer IORT using the INTRABEAM® system”, 2nd European Congress on Medical Physics, Copenhague, Danemark, 23-25 août 2018.

STIEN C., ABUDRAA A., GOURIOU J., DENOZIÈRE M., PLAGNARD J., ITTI R., CHAUVENET B., AUBINEAU-LANIÈCE I., “Determination of the relative dose distribution around an INTRABEAM electronic brachytherapy source using Fricke gel dosimetry”, 2nd European Congress on Medical Physics, Copenhague, Danemark, 23-25 août 2018.

SARI A., BOUDERGUI K., CARREL F., COULON R., DUMAZERT J., FRANGVILLE C., HAMRITA H., TROCMÉ M., THIAM C., KRAUSZ B., PISSARELLO R., DELALEZ R., “Localization of fuel debris in damaged nuclear power plants such as Fukushima Daiichi using fission chambers”, 2018 IEEE Nuclear Science Symposium and Medical Imaging Conference, Sidney, Australia, 10-17 Novembre 2018.

Publications

AMOYAL G., SCHOEPFF V., CARREL F., LOURENCO V., LACOUR D., BRANGER T., “Metrological characterization of the GAMPIX gamma camera”, Nuclear Instruments and Methods in Physics Research A, 944, November 2019, 162568, DOI : 10.1016/j.nima.2019.162568

ANTOHE A., SAHAGIA M., CASSETTE P., LUCA A., IOAN M-R., “Tritium standardization by the LSC-TDCR method and participation at international comparisons”, Romanian Reports in Physics, 71, septembre 2019, 209

BOBIN C., BOUCHARD J., CHISTÉ V., COLLINS S.M., DRYÁK P., FENWICK A., KEIGHTLEY J., LÉPY M.-C., LOURENÇO V., ROBINSON A.P., SOCHOROVÁ J., ŠOLC J., THIAM C.,  “Activity measurements and determination of nuclear decay data of 166Ho in the MRTDosimetry project”, Applied Radiation and Isotopes, 153, 108826, DOI: 10.1016/j.apradiso.2019.108826

COULAUD J., STIEN C., GONNEAU E., FIALLO M., BRUMAS V., SHARROCK P., “A new spectroscopic method for measuring ferric diffusion coefficient in gelatin-based dosimeter gels Biomed.”, Biomedical Physics & Engineering Express, 5, 6, 6 November 2019, 065028.

DELAUNAY F., ANDERSEN C., DE PREZ L., DUANE S., PIMPINELLA M., TELES P., TIKKANEN J., ZINK K., “MV reference dosimetry in TRS-398: State-of-the art and research supporting an updated Code of Practice”, Radiotherapy and Oncology, 133, Avril 2019,  Supplement 1, S117-S118, DOI: 10.1016/S0167-8140(19)30656-5

DUTSOV C., MITEV K., CASSETTE P., JORDANOV V., “Study of two different coincidence counting algorithms in TDCR measurements”, Applied Radiation and Isotopes, 154, December 2019, 108895, DOI : 10.1016/j.apradiso.2019.108895

ENGLE J. W., IGNATYUK A. V., CAPOTE R., CARLSON B. V., HERMANNE A., KELLETT M. A., KIBEDI T., KIM G., KONDEV F. G., HUSSAIN M., LEBEDA O., LUCA A., NAGAI Y., NAIK H., NICHOLS A. L., NORTIER F. M., SURYANARAYANA S. V., TAKACS S., TARKANYI F. T., VERPELLI M., “Recommended nuclear data for the production of selected therapeutic radionuclides”, Nuclear Data Sheets, 155, 56-74, DOI : 10.1016/j.nds.2019.01.003

LÉPY M., THIAM C., ANAGNOSTAKIS M., GALEA R., GURAU D., HURTADO S., KARFOPOULOS K., LIANG J., LIU H., LUCA A., MITSIOS I., POTIRIADIS C., SAVVA M., THANH T., THOMAS V., TOWNSON R., VASILOPOULOU D., ZANG M., “A benchmark for Monte Carlo simulation in gamma-ray spectrometry”, Applied Radiation and Isotopes, 154, 108850, DOI:10.1016/j.apradiso.2019.108850

LOIDL M., BEYER J., BOCKHORN L., ENSS C., KELLETT M. A., KEMPF S., KOSSERT K., MARIAM R., MOUGEOT X., NÄHLE O., RODRIGUES M., SCHMIDT M., “Beta spectrometry with metallic magnetic calorimeters in the framework of the European EMPIR project MetroBeta”, Applied Radiation and Isotopes, 153, 108830, DOI : 10.1016/j.apradiso.2019.108830

MÉNESGUEN Y., DULIEU C., LÉPY M.-C., “Advances in the measurements of the mass attenuation coefficients”, X-Ray Spectrometry, 48, 330-335, DOI: 10.1002/xrs.2991

MÉNESGUEN Y., LÉPY M.-C., ITO Y., YAMASHITA M., FUKUSHIMA S., POLASIK M., SŁABKOWSKA K., SYROCKI Ł., WȨDER E., INDELICATO P., MARQUES J., SAMPAIO J., GUERRA M., PARENTE F., SANTOS J., “Precise x-ray energies of gadolinium determined by a combined experimental and theoretical approach”, Journal of Quantitative Spectroscopy and Radiative Transfer, 236, October 2019, 106585, DOI : 10.1016/j.jqsrt.2019.106585

MOUGEOT X., “Towards high-precision calculation of electron capture decays”, Applied Radiation and Isotopes, 154, 108884, DOI : 10.1016/j.apradiso.2019.108884

PAULSEN M., BEYER J., BOCKHORN L., ENSS C., KEMPF S., KOSSERT K., M. LOIDL, R. MARIAM, O. NÄHLE, P. RANITZSCH, M. RODRIGUES, “Development of a beta spectrometry setup using metallic magnetic calorimeters”, Journal of Instrumentation, 14, August 2019, P08012, DOI: 10.1088/1748-0221/14/08/P08012

PIERRE S., THIAM C., CASSETTE P., MOUGEOT X., SINGH A. “Simulation of the response of an ionization chamber to 214Bi emission. Application to the measurement of 220Rn”, Applied Radiation and Isotopes, 154, December 2019, 108886, DOI: 10.1016/j.apradiso.2019.108886

SANDLER R., BOLLEN G., DISSANAYAKE J., EIBACH M., GULYUZ K., HAMAKER A., IZZO C., MOUGEOT X., PUENTES D., QUARATI F. G. A., REDSHAW M., RINGLE R., SCHWARZ S., YANDOW I., “Direct determination of the 138La beta-decay Q-value using Penning trap mass spectrometry”, Physical Review C 100, 11 July 2019,  014308, DOI: 10.1103/PhysRevC.100.014308

SINGH A., MOUGEOT X., SABOT B., LACOUR D., NOURREDDINE A.-M., “Beta spectrum measurements using a quasi-4 pi detection system based on Si detectors”, Applied Radiation and Isotopes, 154, December 2019, 108897, 4, DOI : 10.1016/j.apradiso.2019.108897 

SINGH B., BASUNIA S., MARTIN M., MCCUTCHAN E., BALA I., CABALLERO-FOLCH R., CANAVAN R., CHAKRABARTI R., CHEKHOVSKA A., GRINDER M., KAIM S., KANJILAL D., D. KASPEROVYCH, KOBRA M., KOURA H., NANDI S., OLACEL A., SINGH A., TEE B., “Nuclear Data Sheets for A=218”, Nuclear Data Sheets, 160, September - October 2019,  405-471, DOI : 10.1016/j.nds.2019.100524

TARKANYI F. T., IGNATYUK A. V., HERMANNE A., CAPOTE R., CARLSON B. V., ENGLE J. W., KELLETT M. A., KIBEDI T., KIM G. N., KONDEV F. G., HUSSAIN M., LEBEDA O., LUCA A., NAGAI Y., NAIK H., NICHOLS A. L., NORTIER F. M., SURYANARAYANA S. V., TAKACS S., VERPELLI M., “Recommended nuclear data for medical radioisotope production: diagnostic gamma emitter”, Journal of Radioanalytical and Nuclear Chemistry 319, 2019, 487-531, DOI : 10.1007/s10967-018-6142-4

TARKANYI F. T., IGNATYUK A. V., HERMANNE A., CAPOTE R., CARLSON B. V., ENGLE J. W., KELLETT M. A., KIBEDI T., KIM G. N., KONDEV F. G., HUSSAIN M., LEBEDA O., LUCA A., NAGAI Y., NAIK H., NICHOLS A. L., NORTIER F. M., SURYANARAYANA S. V., TAKACS S., VERPELLI M., “Recommended nuclear data for medical radioisotope production: diagnostic positron emitters”, Journal of Radioanalytical and Nuclear Chemistry, 319, 2019, 533-666, DOI : 10.1007/s10967-018-6380-5

VAN AMMEL R., STROH H., TZIKA F., MARISSENS G., BRUGGEMAN M., VERHEYEN L., SABOT B., MAURING A., TARJAN S., MCGINNITY P., OSVATH I., FUJAK M., PETERSON J., ZORKO B., PETROVIČ T., GLAVIČ-CINDRO D., “The certification of the massic activities of the radionuclide 60Co in stainless steel disks EURM 800 and 801”, JRC technical report Publications Office of the European Union, EUR 29790 EN, ISBN 978-92-76-08764-9, ISSN 1831-9424, JRC116895, DOI: 10.2760/90491

Communications

DELAUNAY F., “MV reference dosimetry in TRS-398: State-of-the art and research supporting an updated Code of Practice”, 38th Annual Congress of European Society for Therapeutic Radiology and Oncology - ESTRO38, Milan, Italie, 28 avril 2019.

JURCZAK J., RAPP B., DUFRENEIX S., GOURIOU J., DELAUNAY F., BORDY J-M, « Développement d’une nouvelle grandeur de référence pour les traitements en conditions stéréotaxiques: le produit dose-surface », 58èmes Journées SFPM, Angers, France, 5-7 juin 2019. 

LACOSTE V., PETIT M., “Neutron spectrometry at low fluence rates behing concrete shielding - Comparison with Monte-Carlo simulations”, ANNIMA 2019, Portoroz, Slovenie, 17-21 June 2019. 

DI CHICCO A., PETIT M., JACQMIN R., GRESSIER V., STOUT B., “Investigation of the Neutron-Gamma Ray Discrimination Performance of Different Organic Scintillators at the AMANDE Facility”, ANNIMA 2019, Portoroz, Slovenie, 17-21 June 2019.

DELAUNAY F., C. ANDERSEN, L. DE PREZ, S. DUANE, M. PIMPINELLA, P. TELES, J. TIKKANEN, K. ZINK, “Experimental MV kQ, Q0 from RTNORM EMPIR project”, International Symposium on Standards, Applications and Quality Assurance in Medical Radiation Dosimetry IDOS, Vienne, Autriche, 19-21 juin 2019.

BORDY JM., "Grandeurs opérationnelles pour la radioprotection externe: proposition du GT 26 ICRU/ICRP“, Congrès national de radioprotection de la société française de la radioprotection - SFRP, La Rochelle, France, 19-20 juin 2019.

DUSCIAC D., BORDY J.M., BLIDEANU V., VOJNIC KORTMIS M., CENUSA C., CELAREL A., CALDEIRA M. C., CARDOSO J. V., ALVES J. G., MIHAILESCU L.C., SOCHOR V., ZIVANOVIC M., KRZANOVIC N., DERLACINSKI M., MICHALIK L., MAKARIC V., SABETA A., « Exercice d’inter-comparaison en kerma dans l’air dans le cadre du projet européen ABSORB », Congrès national de radioprotection de la société française de la radioprotection - SFRP, La Rochelle, France, 19-20 juin 2019.

THIAM C., CASSETTE P., SABOT B., “New neutron source calibration service at the Laboratoire National Henri Becquerel (LNE-LNHB)”, Congrès international de Métrologie (CIM 2019), Paris, France, 24-26 sep. 2019.

BORDY J.M., BLIDEANU V., CHAPON A., DUPONT G., DUSCIAC D., GOURIOU J., LAINE F., LE ROY M., “Primary reference in terms of air kerma for ionizing radiation fields produced by an electrostatic electron accelerator”, Congrès international de Métrologie (CIM 2019), Paris, France, 24-26 sep. 2019.

PhD abstract

Isotopic analysis of actinides is necessary for fuel cycle management, non-proliferation treaty control or environmental monitoring. The accuracy of these analyses may be limited by the performance of the detector used but also by the uncertainties associated with the emission intensities available in the nuclear data tables. The disintegration of actinides is generally followed by intense X-ray and gamma photon emissions in the energy range below 100 keV. Their detection may be of particular interest for actinide analysis. However, conventional measurement techniques do not allow to properly separate the lines of the considered emissions. This thesis was devoted to the measurement of intensities using a cryogenic detector. The latter is based on a magnetic metallic calorimeter (MMC) that measures energy deposition as a temperature rise. The MMC, called SMX3, has four pixels and is specifically designed for high resolution X-ray and gamma spectrometry in the energy range below 100 keV to measure actinide emission intensities. In addition to the high resolution provided by SMX3 through its operating principle, this detector has a constant detection efficiency and almost equal to 100% over the energy range below 25 keV, where actinides' XL rays are emitted.The SMX3 yield curve was calibrated by a method that consists of a single standard source measurement of Am-241 combined with Monte Carlo simulations. The three actinides Pu-238, Pu-239, and Cm-244 were measured to provide absolute and relative intensities of Li-Yj emissions (with Y=L,M,N,O,P i=1,2,3 and j=1..7). Thanks to the very high energy resolution of the MMC, the individual XL lines of actinides can be separated. Satellite lines are also detected, their intensities relative to the diagram lines depend on the isotope according to the fundamental atomic parameters. The intensities of the individual XL lines could be determined for the first time, especially for the transitions L₁-L₃. In addition, the intensities of the XLi regions (i=1,2,3) were established. The intensities of the overall XL and XL groups are compared with the calculations and experimental data available in the literature.

Key words

metallic magnetic calorimeter, actinide, X and gamma rays spectroscopy

PhD thesis

PhD abstract

In France, the references associated to the neutron fluence and the deriva-ted dosimetric quantities are under the responsability of the micro-irradiation and neutronmetrology and dosimetry laboratory (LMDN)of IRSN. In order to improve the definition ofreferences in fluence and energy of the monoenergetic neutron fields, produced at AMANDEfacility, a micro-TPC gaseous detector, called LNE-IRSN-MIMAC, is developping in collabo-ration with LPSC.In a previous work, the detector was qualified for neutron fields in the energy rangebetween 27 keV and 565 keV. The objective of the present work is to extend the range of theμTPC above 1 MeV. The choice of the gas, the development of an analysis method and thedetector characterization allowed to validate the detector capacity to perform measurements inmonoenergetic neutron fields ranging from 250 keV up to 6,5 MeV with a relative uncertaintyof 3% and 2,5% respectively in energy and fluence.

Key words

elastic scattering, time projection chamber, neutron spectrometer, primary standard

PhD thesis

PhD abstract

Chalcogenide materials are compounds based on S, Se, and Te elements from group VI of the periodic table. They are receiving an extensive interest not only for applications in resistive memories (PCRAM and CBRAM), photonics and photovoltaics but also in the development of new 2-D materials (e.g. spintronics applications). Chalcogenide materials are already present in the semiconductor roadmaps and it is already replacing flash memories (e.g. phase change material and ovonic threshold switch in new random access memory). For the next technology nodes, chalcogenide properties can be scaled by tuning the chemical composition or by reducing the film thickness. Nonetheless, it also means that their properties become more tightly influenced by the chemical composition, the surface/interface effects and the depth-profile composition. Hence, dedicated metrology protocols must be developed, first to assist the optimization of chalcogenide materials processes in cleanroom environment, then to allow non-destructive process monitoring with industry-driven uncertainties. In this PhD thesis, we developed metrology protocols based on X-ray techniques, dedicated to thin chalcogenides materials and fully compatible with inline monitoring. First, we used quasi in-situ X-ray Photoelectron Spectroscopy (XPS) to characterize the surface of Ge, Sb, Te thin materials and compounds, and to study the composition-dependent evolution of the surface after air break and ageing. The efficiency of in situ capping strategies to protect Te-based and Se-based thin layered materials from ageing was also investigated. Secondly, we demonstrated the ability of improved metrology strategies based on in-line Wavelength Dispersive X-ray Fluorescence (WDXRF) and XPS to accurately quantify the chemical composition of Ge-Sb-Te compounds (from 1 to 200 nm) and ultrathin 2D transition metal dichalcogenides (MoS₂, WS₂). Combined WDXRF/XPS analysis was used to determine refined values of composition-dependent relative sensitivity factors for Te4d, Sb4d and Ge3d that allow for XPS-based metrology of PCRAM materials with mastered accuracy. We pointed the need for in-depth study of the significant matrix effects that alter the ability of WDXRF to quantify Nitrogen in Ge-Sb-Te materials: ion beam analysis was carefully investigated as possible input for WDXRF calibration, and a WDXRF protocol was established for inline monitoring of N-doped Ge-Sb-Te films in a specific process window. Finally, we investigated two ways to non-destructively characterize the in-depth chemical distribution in thin chalcogenide films: we demonstrated that the combination of XRF in grazing incidence geometry (GIXRF) and X-ray reflectometry (XRR) was able to unambiguously reveal small process differences along with process-induced diffusion in 10 nm-thick stackings. We showed that the use of multilayered substrate instead of silicon allowed fine-tuning of the depth-dependent X-ray standing wave field, resulting in improved sensitivity of XRR/GIXRF strategies. We also developed an angle-resolved XPS protocol for the evaluation of the first deposition steps of GeTe and Ge₂Sb₂Te₅ films, revealing the process-dependent elemental distribution as a function of the film growth. Therefore, in this work we not only elaborated advanced metrology protocols for the development of new chalcogenide films but also metrological solutions for the next technology nodes (28 nm and below), since current in-line metrology tools reach their detection limits.

Key words

chalcogenides, XPS, memories, X-rays metrology, XRF, 2-D materials

PhD thesis

PhD abstract

Reactor dosimetry is used to determine the neutron fluence during an irradiation and to characterize its spectrum (neutron energy distribution). This technique is based on the analysis of the activity of irradiated dosimeters, made of pure metals or alloys. The activity measurement of these samples is performed by gamma and/or X-ray spectrometry and is currently based on specific standard dosimeters, validated for the measurement conditions. The goal of the thesis is to avoid this calibration step and to be able to directly measure the activity of the sample. The study focused specifically on niobium and rhodium dosimeters which are used to characterize neutrons in the energy range around 1 MeV. Their activation produces 93mNb and 103mRh, respectively. These two radionuclides decay through an isomeric gamma transition, emitting mainly K X-rays with energies around 20 keV, on which the spectrometric activity measurement is based. However, owing to their low energy, these X-rays are particularly difficult to measure accurately. The various parameters required to determine the activity of the dosimeters, with a relative standard uncertainty of around 2%, were studied in detail. The work initially focused on the calibration of hyper-pure germanium (HPGe) detectors in the energy range between 11 keV and 150 keV. This is a crucial step in determining the activity of a radionuclide sample and is difficult to achieve in the energy range of interest. The experimental approach, using standard point sources, was coupled with semi-empirical modelling and simulations of radiation-matter interactions by Monte Carlo methods (PENELOPE and GEANT4). These methods have made it possible to study in detail the photons scattering at low energy, around 20 keV, which interferes with the full-energy peaks in the spectra and disturbs their analysis. In a second step, Monte Carlo simulations were used to calculate the correction factors needed to derive the dosimeter activity: self-absorption of photons in the dosimeter material and the geometry change between the calibration conditions (point source) and the measurement conditions (solid metal sample). The fluorescence induced by impurities (in the dosimeter material or created during irradiation in the reactor) was studied and the correction factors to be applied were established. Radioactive decay data, particularly photon emission intensities, are the main components of the uncertainty in dosimeter activity results. X-ray emission intensities are rarely measured experimentally and most often their values are calculated from fundamental parameters i.e. internal conversion coefficients and fluorescence yields, and a balanced decay scheme, of the nuclide. Several experiments were designed to provide new experimental data. The mass attenuation coefficients and K fluorescence yields of niobium and rhodium were determined using a monochromatic photon beam at the SOLEIL synchrotron facility. The photon emission intensities of 103mRh were measured using two approaches, one from rhodium activated at the ISIS reactor and the other from a solution of palladium 103. All these new values are compared with previously published data and the decay scheme of 103mRh is discussed.

Key words

radioactivity measurement, X and gamma-Ray spectrometry, reactor dosimetry, Niobium, Rhodium, Monte-Carlo simulation

PhD abstract

Electronic Brachytherapy (eBT), also called contact radiotherapy, is a cancer treatment technique using low energy X-Rays (≤ 50 keV) generated by X-Ray tubes which are placed in close contact with the treated lesions. The latest evolutions of miniaturized X-Ray tubes led to the development of new treatment systems, such as the INTRABEAM® system of the ZEISS Company which is the most available eBT system and the only one currently used in France. Beside its medical benefit, the potential major advantages of treatment by eBT are the drastic decrease in patient discomfort and treatment cost. In the case of breast cancer treatment with such technique, the treatment is given in a single session that lasts 20 to 50 minutes where a high dose, in the order of 20 Gy, is delivered to the tumor bed surface in contact with spherical applicators associated to the X-Ray source. The delivered dose decreases rapidly with depth (< 1 Gy after a few centimeters) enabling to preserve neighboring healthy tissues. In France, the first IORT treatment performed was in Nantes in 2011. Today, ten medical centers offer IORT treatment using the INTRABEAM® system. Consequently, several medical physicists addressed to the French national metrology laboratory for ionizing radiation (LNHB) their need for a dosimetric traceability with a reference independent from the manufacturer. This need was reaffirmed by the French Authority for Health (HAS), in their report on the evaluation of the IORT for breast cancer treatment published in April 2016. This thesis work is a contribution to the metrological work initiated by LNHB for enhancing the safety of employing IORT by eBT systems. It was limited, within the thesis period, to the INTRABEAM® system associated with a 4 cm diameter spherical applicator. The thesis work was oriented towards three main objectives. The first one concerned the establishment and the transfer of a primary dosimetric standard, in terms of absorbed dose to water at 1 cm depth in water. The methodology was developed and applied on the INTRABEAM® system with 4 cm spherical applicator, for which, the dosimetric reference was established. The second objective was to use a dosimetric gel and the Monte Carlo method to assess the 3D spatial distribution of the relative absorbed dose delivered by such a system. The dosimetric gel system used was a Fricke-based hydrogel read by Magnetic Resonance Imaging at Service Hospitalier Frédéric Joliot in Orsay (SHFJ). The gel reading was calibrated, in terms of absorbed dose for low energy X-Rays (< 50 keV), and then used to define the relative dose distributions of the INTRABEAM® X-Ray source associated with the 4 cm spherical applicator in the axial and transverse planes of the X-Ray source probe tip. The last objective was to compare the dosimetric data delivered by Zeiss, for the INTRABEAM® system used at St. Louis hospital in Paris, by the ones obtained in the current study for the same system. Significant discrepancies were found from this comparison between the doses delivered by Zeiss and those obtained in the current study. Discrepancies were also observed in a separate work conducted by the PTB under a different INTRABEAM® configuration. Some reasons of these discrepancies are outlined and discussed in this study.

Key words

intrabeam, contact X-Ray therapy (CXRT), axxent, electronic brachytherapy, low-energy X-Rays, primary standards

PhD thesis

PhD abstract

Protocols for cancer treatment using intensity-modulated radiation therapy (IMRT) allow to target the tumor with an increased precision. They require accurate anatomical information of the patient just before the treatment, which can be obtained using on-board imaging systems mounted on the medical linear accelerator delivering the treatment beam. These systems, composed of an X-ray tube and a 2D planar detector, are called kV-Cone Beam CT (kV-CBCT). Nowadays, they are widely used in the context of IMRT treatments. However, these kV-CBCT examinations are also responsible for an additional dose of ionizing radiations which is far to be negligible and could be the cause for secondary effects, such as radiation-induced second cancers for treated patients. During this PhD work, a simulator based on the Monte Carlo method was developed in order to calculate accurately the doses delivered to organs during kV-CBCT examinations. Then, this tool was used to study several strategies to take in account for the imaging additional doses in clinical environment. The study reported here includes, in particular, a fast and personalized method to estimate the doses delivered to organs. This strategy was developed using a cohort of 50 patients including 40 children and 10 adults. This work has been done in collaboration with the medical physics unit of the Eugène Marquis medical center in Rennes, which has collected the clinical data used for this study.

Key words

Monte-Carlo simulation, tomography, dose.

Publications

AMIOT M.-N., BOUCHARD J., BÉ M.-M. et ADAMO J.-B., “Half life determination of 88Y and 89Sr”, Applied Radiation and Isotopes, 62, 2005, 11-15.

BÉ M.-M. et tous les participants au projet Euromet 721, “Activity measurements and gamma emission intensities determination in the decay of 65Zn”, Rapport CEA R-6081.

BE M.-M., CHISTE V. et DULIEU C., « Base de données Nucléide », Techniques de l’Ingénieur, CD P 2 598 v2.

BOBIN C. et BOUCHARD J., “A 4p(LS)b-g coincidence system using a TDCR apparatus in the b-channel”, Applied Radiation and Isotopes, 64, 2006, 124-130.

CHAVAUDRA J., CHAUVENET B. et WAMBERSIE A., “Medicine and ionizing radiation: metrology requirements”, C. R. Physique, 5, 2004, 907-920 (Académie des Sciences, Paris).

DAURES J. et OSTROWSKY A., “New constant-temperature operating mode for graphite calorimeter at LNE-LNHB”, Phys. Med. Biol., 50, 2005, 4035-4052.

DOLO J.-M. et FEAUGAS V., “Analysis of parameters that influence the amplitude of the ESR/alanine signal after irradiation”, Applied Radiation and Isotope, 62, 2005 273-279.

DOLO J.-M. et MOIGNAU F., “Use of the entire spectrum of irradiated alanine for dosimetry”, Applied Radiation and Isotopes 62, 2005, 281.

DOLO J.-M., RAFFI J. et PICCERELLE P., « Etude du mécanisme de radiolyse de l’alanine et des acides aminés. Implications pour la métrologie des rayonnements ionisants : dosimétrie par résonance paramagnétique électronique de l’alanine », Revue française de métrologie, 4, vol. 2005-4, 5-15.

DOUYSSET G., GOURIOU J., DELAUNAY F; DE WERD L; STUMP K. et MICKA J., “Comparison of dosimetric standards of USA and France for HDR brachytherapy”, Phys. Med. Biol., 50, 2005, 1961-1978.

STANGA D., MOREAU I., PICOLO J.-L. et CASSETTE P., “A new tritium gas generator for the activity measurement of tritiated water by internal gas proportional counting”, Fusion Science and Technology, 48, 2005, 354-357.

Communications

DELAUNAY F., “Two different ways (among others) for estimating the uncertainty of a composite saturation correction factor (ks) in a continuous beam”, CCRI(I) Workshop « Uncertainties », Sèvres, France, 17 mai 2005.

DENOZIERE M. et BORDY J.-M., « Références dosimétriques au LNHB pour le radiodiagnostic médical et la mammographie », 44es Journées scientifiques de la SFPM, Avignon, France, 2-4 juin 2005.

BORDY J.-M. et DENOZIERE M., « Synoptique comparatif des systèmes de grandeurs utilisés en radioprotection des patients et des travailleurs (dosimétrie externe pour la protection de l’Homme) », 44es Journées scientifiques de la SFPM, Avignon, France, 2-4 juin 2005.

BLANCHIS P., « La métrologie des rayonnements ionisants au service de la santé : la médecine nucléaire », 12e Congrès international de métrologie, 20-23 juin 2005, Lyon, France.

BORDY J.-M., DENOZIERE M. et DOUYSSET G., « La métrologie des rayonnements ionisants au service de la santé : diagnostic et radiothérapie », 12e Congrès international de métrologie, Lyon, France, 20-23 juin 2005.

LOIDL M., LEBLANC E., RODRIGUES M., LEPRINCE B., EGLIN L., ROTZINGER H., LINCK M., BURCK A., SCARBROUGH T., FLEISCHMANN A. et ENSS C., “Nuclear and atomic data determination with metallic magnetic calorimeters”, 11th International Workshop on Low Temperature Detectors (LTD-11), Tokyo, Japon, 31 juillet – 5 août 2005.

CASSETTE P. et ARENILLAS P., “Implementation of the TDCR liquid scintillation method at CNEA-LMR”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

STANGA D., MOREAU I. et CASSETTE P., “Standardization of Tritiated Water by Two Improved Methods”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

CASSETTE P., SAHAGIA M., GRIGORESCU L., LÉPY M.-C. et PICOLO J.-L., “Standardization of 222Rn by LSC and comparison with alpha and gamma spectrometry”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

CASSETTE P., AHN G.H., ALZITZOGLOU T., AUBINEAU-LANIÈCE I., BOCHUD F., GARCIA TORANO E., GRAU CARLES A., GRAU MALONDA A., KOSSERT K., LEE K.B., LAEDERMANN J.P., VAN WYNGAARDT W.M. et ZIMMERMAN B.E., “Comparison of calculated spectra for the interaction of photons in a liquid scintillator. Example of 54Mn 835 keV emission”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

BÉ M.-M., “Activity measurements and gamma emission intensities determination in the decay of 65Zn”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

IROULART M.-G., “Thermodynamic stability of radioactivity standard solutions”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

BÉ M.-M., CHISTE V. et DULIEU C., “Detailed calculation of K- and L- Auger electron emission intensities following the radioactive disintegration”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

RAZDOLESCU A.C., BRODA R., CASSETTE P., SIMPSON B.R.S. et VAN WYNGAARDT W.M., “The IFIN-HH triple coincidence liquid scintillation counter”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

JAUBERT F., TARTÈS I. et CASSETTE P., “Quality control of liquid scintillation counters”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

LÉPY M.-C., AMIOT M.-N., BÉ M.-M. et CASSETTE P., “Determination of the intensity of X- and gamma-ray emissions in the decay of 153Sm”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

LÉPY M.-C., BRUN P., COLLIN C. et PLAGNARD J., “Experimental validation of coincidence summing corrections computed by the ETNA software”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

LEBLANC E., CORON N., LEBLANC J., DE MARCILLAC P., BOUCHARD J. et PLAGNARD J.,“High energy resolution alpha spectrometry using cryogenic detectors”, 15th International Conference on Radionuclide Metrology and its Applications (ICRM 2005), Oxford, Royaume-Uni, 5-9 septembre 2005.

GOURIOU J. et DOUYSSET G., Monte Carlo simulations used to establish a French national HDR brachytherapy reference”, Conférence M & C 2005, Avignon, France, 12-15 septembre 2005.

MAGUET F., TARTES I., CASSETTE P., PLAGNARD J., LÉPY M.-C. et JAUBERT F.,Measurement of photon absorption coefficients of liquid scintillators in the 5 to 12 keV energy range using a monochromatic X-ray source”, LSC2005 conference, advances in liquid scintillation spectrometry, Katowice, Pologne, 17-21 septembre 2005.