Évaluation des sources de l’exposition externe
305
[36] NCRP (1977) Radiation protection design Guidelines for 0.1–100 MeV Particle
Accelerator Facilities – NCRP Report n° 51.
[37] Pagès L, Bertel E, Joffre H, Sklavenitis L (1972) Energy loss range, and
bremsstrahlung yield for 10 keV to 100 MeV electrons. Atom Data Nucl Data Vol. 4,
N°1.
[38] Pratt RH, Tseng HK, Lee CM, Kissel L, MacCallum C, Riley M (1977)
Bremsstrahlung energy spectra from electrons of kinetic energy 1 keV ≤ T ≤ 2000 keV
Incident on neutral atoms 2 ≤ Z ≤ 92 Atom. Data Nucl Data Tables 20.
[39] The Lund/LBNL Nuclear Data Search Version 2.0, February 1999 SYF Chu1, LP
Ekström and RB Firestone, http://nucleardata.nuclear.lu.se/nucleardata/toi/.
[40] Nuclear data viewer Los Alamos Laborator, http://t2.lanl.gov/data/ndviewer.html.
[41] Pelowitz DB (2005) MCNPX User’s manual version 2.5.0. LA-CP-05-0369.
[42] Russel B, Sachs D, Wattenberg A, Fileds R (1948) Yields of neutrons from photoneutron sources. Phys Rev second series Vol. 73, N°6, 545-549.
[43] Seltzer SM (1988) Cross section for bremsstrahlung production and electron impact
ionization. In Monte Carlo transport of electrons and photons, edited by TM Jenkins,
WR Nelson and A Rindi (Plenum press, New York).
[44] Shin K, Hibi K, Fujii M, Uwamino Y, Nakamura T (1984) Neutron and photon
production from thick targets bombarded by 30 MeV p, 33 MeV d, 65 MeV 3He, and
65 MeV α ions: Experiment and comparison with cascade Monte Carlo calculations
Phys Rev C Vol. 29, N°4.
[45] Shultis JK, Faw RE (2000) Radiation Shielding. American Nuclear Society, Inc.
[46] Staples P, Egan JJ, Kegel GHR, Mittler A, Woodring ML (1995) Prompt fission
neutron energy spectra induced by fast neutrons. Nucl Phys A 591, 41-60.
[47] Sullivan AH (1992) A guide to radiation and radioactivity levels near high energy
particle accelerators Nuclear Technology Publishing Ashford, Kent, TN23 1JW ISBN 1
870965 18 3.
[48] Tagziria H, Roberts NJ, Thomas DJ (2003) Measurement of the 241Am-Li radionuclide neutron source spectrum. Nucl Inst Meth A 510, 346-356.
[49] Terrell J (1959) Fission neutron spectra and nuclear temperature. Phys Rev Vol.
113, N°2.
[50] Tseng HK, Pratt RH (1971) Exact screened calculation of atomic field
bremsstrahlung. Phys Rev A 3, 100.
[51] Tsilanizara A, Diop CM et al. (2000) DARWIN: An Evolution code system for a
large range of applications (Proceedings of the 9th International Conference on Radiation Shielding, Tsukuba, Japan, 1999), J Nucl Sci Technol Suppl. 1, 845-849.
[52] Tucker DM, Barnes G, Chakraborty DP (1991) Semiempirical model for generating
tungsten target X-ray spectra. Med Phys 18(2), 211-218.
[53] Valentine TE (2001) Evaluation of prompt fission gamma rays for use in simulating
nuclear safeguard measurements. Annals of Nuclear Energy 28, 191-201.
[54] Verbeke JM, Hagmann, Wright C (2010) Simulation of neutron and gamma ray
emission from fission and photofission. Lawrence Livermore National Laboratory.
UCRL-AR-228518.
305
[36] NCRP (1977) Radiation protection design Guidelines for 0.1–100 MeV Particle
Accelerator Facilities – NCRP Report n° 51.
[37] Pagès L, Bertel E, Joffre H, Sklavenitis L (1972) Energy loss range, and
bremsstrahlung yield for 10 keV to 100 MeV electrons. Atom Data Nucl Data Vol. 4,
N°1.
[38] Pratt RH, Tseng HK, Lee CM, Kissel L, MacCallum C, Riley M (1977)
Bremsstrahlung energy spectra from electrons of kinetic energy 1 keV ≤ T ≤ 2000 keV
Incident on neutral atoms 2 ≤ Z ≤ 92 Atom. Data Nucl Data Tables 20.
[39] The Lund/LBNL Nuclear Data Search Version 2.0, February 1999 SYF Chu1, LP
Ekström and RB Firestone, http://nucleardata.nuclear.lu.se/nucleardata/toi/.
[40] Nuclear data viewer Los Alamos Laborator, http://t2.lanl.gov/data/ndviewer.html.
[41] Pelowitz DB (2005) MCNPX User’s manual version 2.5.0. LA-CP-05-0369.
[42] Russel B, Sachs D, Wattenberg A, Fileds R (1948) Yields of neutrons from photoneutron sources. Phys Rev second series Vol. 73, N°6, 545-549.
[43] Seltzer SM (1988) Cross section for bremsstrahlung production and electron impact
ionization. In Monte Carlo transport of electrons and photons, edited by TM Jenkins,
WR Nelson and A Rindi (Plenum press, New York).
[44] Shin K, Hibi K, Fujii M, Uwamino Y, Nakamura T (1984) Neutron and photon
production from thick targets bombarded by 30 MeV p, 33 MeV d, 65 MeV 3He, and
65 MeV α ions: Experiment and comparison with cascade Monte Carlo calculations
Phys Rev C Vol. 29, N°4.
[45] Shultis JK, Faw RE (2000) Radiation Shielding. American Nuclear Society, Inc.
[46] Staples P, Egan JJ, Kegel GHR, Mittler A, Woodring ML (1995) Prompt fission
neutron energy spectra induced by fast neutrons. Nucl Phys A 591, 41-60.
[47] Sullivan AH (1992) A guide to radiation and radioactivity levels near high energy
particle accelerators Nuclear Technology Publishing Ashford, Kent, TN23 1JW ISBN 1
870965 18 3.
[48] Tagziria H, Roberts NJ, Thomas DJ (2003) Measurement of the 241Am-Li radionuclide neutron source spectrum. Nucl Inst Meth A 510, 346-356.
[49] Terrell J (1959) Fission neutron spectra and nuclear temperature. Phys Rev Vol.
113, N°2.
[50] Tseng HK, Pratt RH (1971) Exact screened calculation of atomic field
bremsstrahlung. Phys Rev A 3, 100.
[51] Tsilanizara A, Diop CM et al. (2000) DARWIN: An Evolution code system for a
large range of applications (Proceedings of the 9th International Conference on Radiation Shielding, Tsukuba, Japan, 1999), J Nucl Sci Technol Suppl. 1, 845-849.
[52] Tucker DM, Barnes G, Chakraborty DP (1991) Semiempirical model for generating
tungsten target X-ray spectra. Med Phys 18(2), 211-218.
[53] Valentine TE (2001) Evaluation of prompt fission gamma rays for use in simulating
nuclear safeguard measurements. Annals of Nuclear Energy 28, 191-201.
[54] Verbeke JM, Hagmann, Wright C (2010) Simulation of neutron and gamma ray
emission from fission and photofission. Lawrence Livermore National Laboratory.
UCRL-AR-228518.
