304
Physique appliquée à l’exposition externe : dosimétrie et radioprotection
(1999) Electron, Photon, and ion beams from the relativistiv interaction of petawatt
laser pulses with solid targets. LLNL UCRL-JC-135029.
[16] Hunter HF, Ballou NE (1951) Fission product decay rates. Nucleonics Vol. 9, 5.
[17] IAEA (1990) Compendium of Neutron Spectra and Detector Responses for Radiation Protection Purposes, Technical Reports Series No. 318, IAEA, Vienna.
[18] IAEA (2000) Handbook on photonuclear data for application. Cross section and
spectra. IAEA-TECDOC, 1178, IAEA, Vienna.
[19] IAEA (1979) Radiological Safety Aspects of the operation of electron Linear Accelerators – IAEA Technical reports series n°188.
[20] IAEA (2008) Handbook of nuclear data for safeguards: database extensions, august
2008. International Nuclear Data Committee. INDC(NDS)–0534.
[21] ICRP (1971) Protection against Ionizing Radiation from External Sources and
Data for Protection against Ionizing Radiation from External Sources, publication 15
and 21.
[22] ICRP (1987) Data for use in radiological protection against external radiation.
ICRP publication 51. Pergamon Press.
[23] ICRP (1995) Conversion coefficients for Use in Radiological Protection Against
External Radiation, publication 74.
[24] ICRP (2007) Nuclear decay data for dosimetric calculations. Publication 107.
[25] ICRU (1985) Stopping Powers for electrons and positrons. Publication 37.
[26] ISO (2002) Norme NF ISO 8529-1 Rayonnements neutroniques de référence partie
1 : Caractéristiques et méthodes de production.
[27] Toupin C, Lefebvre E, Bonnaud G (2001) Neutron emission from a deuterated solid
irradiated by an ultraintense laser pulse. Phys Plasmas Vol. 8, 3, 1011-1021.
[28] Koch HW, Motz (1959) Bremsstrahlung cross section formulas and related data.
Rev Mod Phys Vol. 31, n°4, 920-956.
[29] Leclère AST (2001) An evaluation of bremsstrahlung cross-section for keV to GeV
electrons. Thesis presented to the graduate school of the university of Florida. University of Florida.
[30] Lee CM, Kissel L, Pratt RH, Tseng HK (1976) Electron bremsstrahlung spectrum,
1–500 keV. Phys Rev A Vol. 13, n°5, 1714-1727.
[31] Lefebvre E, Davoine X, Beck A, Rechatin C, Faure J, Malka V (2009) Contrôle
tout optique des faisceaux d’électrons accélérés par sillage laser. Revue Chocs avancées
2009/avancées scientifiques et techniques, CEA, Direction des applications militaires.
[32] Lefebvre E, Cochet N, Fritzler S et al. (2003) Electron and photon production from
relativistic laser-plasma interactions. Nucl Fusion 43, 629-633.
[33] Malka V, Faure J, Gauduel YA, Lefebvre E, Rousse A, Ta Phuoc K (2008) Principles
and applications of compact laser-plasma accelerators. Nature physics Vol. 4, 447-453.
[34] Maslov VM, Porodzinskij YV, Baba M, Hasegawa A, Kornilov N, Kagalenko AB,
Tetereva NA (2003) Prompt fission spectra of
238
U(n,f) above emissive fission threshold.
Eur Phys J A 18, 93-102.
[35] Masson L, Bourgois L (2000) Calculs et mesures de l’activation induite dans les
bétons de protection d’un accélérateur d’ions de haute énergie. Radioprotection Vol. 35,
n°3, 311-334.
Physique appliquée à l’exposition externe : dosimétrie et radioprotection
(1999) Electron, Photon, and ion beams from the relativistiv interaction of petawatt
laser pulses with solid targets. LLNL UCRL-JC-135029.
[16] Hunter HF, Ballou NE (1951) Fission product decay rates. Nucleonics Vol. 9, 5.
[17] IAEA (1990) Compendium of Neutron Spectra and Detector Responses for Radiation Protection Purposes, Technical Reports Series No. 318, IAEA, Vienna.
[18] IAEA (2000) Handbook on photonuclear data for application. Cross section and
spectra. IAEA-TECDOC, 1178, IAEA, Vienna.
[19] IAEA (1979) Radiological Safety Aspects of the operation of electron Linear Accelerators – IAEA Technical reports series n°188.
[20] IAEA (2008) Handbook of nuclear data for safeguards: database extensions, august
2008. International Nuclear Data Committee. INDC(NDS)–0534.
[21] ICRP (1971) Protection against Ionizing Radiation from External Sources and
Data for Protection against Ionizing Radiation from External Sources, publication 15
and 21.
[22] ICRP (1987) Data for use in radiological protection against external radiation.
ICRP publication 51. Pergamon Press.
[23] ICRP (1995) Conversion coefficients for Use in Radiological Protection Against
External Radiation, publication 74.
[24] ICRP (2007) Nuclear decay data for dosimetric calculations. Publication 107.
[25] ICRU (1985) Stopping Powers for electrons and positrons. Publication 37.
[26] ISO (2002) Norme NF ISO 8529-1 Rayonnements neutroniques de référence partie
1 : Caractéristiques et méthodes de production.
[27] Toupin C, Lefebvre E, Bonnaud G (2001) Neutron emission from a deuterated solid
irradiated by an ultraintense laser pulse. Phys Plasmas Vol. 8, 3, 1011-1021.
[28] Koch HW, Motz (1959) Bremsstrahlung cross section formulas and related data.
Rev Mod Phys Vol. 31, n°4, 920-956.
[29] Leclère AST (2001) An evaluation of bremsstrahlung cross-section for keV to GeV
electrons. Thesis presented to the graduate school of the university of Florida. University of Florida.
[30] Lee CM, Kissel L, Pratt RH, Tseng HK (1976) Electron bremsstrahlung spectrum,
1–500 keV. Phys Rev A Vol. 13, n°5, 1714-1727.
[31] Lefebvre E, Davoine X, Beck A, Rechatin C, Faure J, Malka V (2009) Contrôle
tout optique des faisceaux d’électrons accélérés par sillage laser. Revue Chocs avancées
2009/avancées scientifiques et techniques, CEA, Direction des applications militaires.
[32] Lefebvre E, Cochet N, Fritzler S et al. (2003) Electron and photon production from
relativistic laser-plasma interactions. Nucl Fusion 43, 629-633.
[33] Malka V, Faure J, Gauduel YA, Lefebvre E, Rousse A, Ta Phuoc K (2008) Principles
and applications of compact laser-plasma accelerators. Nature physics Vol. 4, 447-453.
[34] Maslov VM, Porodzinskij YV, Baba M, Hasegawa A, Kornilov N, Kagalenko AB,
Tetereva NA (2003) Prompt fission spectra of
238
U(n,f) above emissive fission threshold.
Eur Phys J A 18, 93-102.
[35] Masson L, Bourgois L (2000) Calculs et mesures de l’activation induite dans les
bétons de protection d’un accélérateur d’ions de haute énergie. Radioprotection Vol. 35,
n°3, 311-334.
