148
Physique appliquée à l’exposition externe : dosimétrie et radioprotection
[41] Lacoste V, Gressier V (2010) Experimental characterisation of the IRSN long
counter for the determination of the neutron fluence reference values at the AMANDE
facility. Radiat Meas 45, 1254-1257.
[42] Lefort M (1966) La chimie nucléaire : étude des noyaux radioactifs et des réactions
nucléaires. Dunod.
[43] Loevinger R, Japha EM, Brownwell G (1956) L. Discrete radioisotope sources. In
Radiation Dosimetry. Ed GJ Hine and GL Brownell (Academic Press), 693-799.
[44] Northcliffe LC (1960) Energy Loss and Effective Charge of Heavy Ions in Aluminum. Phys Rev 120, 1744–1757.
[45] Paganetti H (2002) Nuclear interactions in proton therapy: dose and relative biological effect distributions originating from primary and secondary particles. Phys Med
Biol 47, 747–764.
[46] 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.
[47] Pannetier R (1980) Vade-mecum du technicien nucléaire S.C.F. du Bastet.
[48] Pelliccioni M (1998) Fluence to dose equivalent conversion data and radiation
weighting factors for high energy radiation. Radiat Prot Dosim Vol. 77, No. 3, 159–170.
[49] Pelowitz DB (2005) MCNPX User’s manual version 2.5.0. LA–CP–05–0369.
[50] Pichenot G, Guldbakke S, Asselineau B, Gressier V, Itié C, Klein H, Knauf K,
Lebreton L, Löb S, Pochon-Guérin L, Schlegel D, Sosaat W (2002) Characterisation of
spherical recoil proton proportional counters used for neutron spectrometry. Nucl Inst
Meth A 476, 165-169.
[51] Profio AE (1979) Radiation shielding and dosimetry. John Wiley and Sons, Inc.,
New York, NY.
[52] Roberts NJ, Douglas DJ, Lacoste V, Böttger R, Loeb S (2010) Comparison of long
counter measurements of monoenergetic and radionuclide source-based neutron fluence.
Radiat Meas 45, 1151-1153.
[53] Rohrlish, Carlson (1953) Positron-electron differences in energy loss and multiple
scattering. Phys Rev 93, (1954), 38-44.
[54] Shultis JK, Faw RE (2000) Radiation Shielding. American Nuclear Society, Inc.
[55] Sternheimer RM (1966) Density Effect for the Ionization Loss of Charged Particles.
Phys Rev Vol. 145, 1, 247-250.
[56] Tsvetkov I, Fominykh V (1978) Calorimeter for absolute measurement of absorbed
electron dose. Meas Tech Vol. 23, 6.
[57] Vega-Carrillo HR, Manzanares-Acuña E, Hernández-Dávila, Mercado Sánchez GA
(2005) Response matrix of a multisphere spectrometer with an
3
He proportional
counter. Rev Mex Fis 51 (1), 45-52.
[58] Williamson C, Boujot JP, Picard J (1966) Tables of range and stopping power of
chemical elements for charges particles of energy 0,5 to 500 MeV. Rapport CEA R 3042.
[59] Veinot KG, Hertel NE (2005) Effective quality factor for neutrons based on the
revised ICRP/ICRU recommendations. Rad Prot Dosim Vol 115 n° 1-4: 536-541.
[60] ICRP (1995) Conversion coefficients for Use in Radiological Against External Radiation. Publication 74.
Physique appliquée à l’exposition externe : dosimétrie et radioprotection
[41] Lacoste V, Gressier V (2010) Experimental characterisation of the IRSN long
counter for the determination of the neutron fluence reference values at the AMANDE
facility. Radiat Meas 45, 1254-1257.
[42] Lefort M (1966) La chimie nucléaire : étude des noyaux radioactifs et des réactions
nucléaires. Dunod.
[43] Loevinger R, Japha EM, Brownwell G (1956) L. Discrete radioisotope sources. In
Radiation Dosimetry. Ed GJ Hine and GL Brownell (Academic Press), 693-799.
[44] Northcliffe LC (1960) Energy Loss and Effective Charge of Heavy Ions in Aluminum. Phys Rev 120, 1744–1757.
[45] Paganetti H (2002) Nuclear interactions in proton therapy: dose and relative biological effect distributions originating from primary and secondary particles. Phys Med
Biol 47, 747–764.
[46] 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.
[47] Pannetier R (1980) Vade-mecum du technicien nucléaire S.C.F. du Bastet.
[48] Pelliccioni M (1998) Fluence to dose equivalent conversion data and radiation
weighting factors for high energy radiation. Radiat Prot Dosim Vol. 77, No. 3, 159–170.
[49] Pelowitz DB (2005) MCNPX User’s manual version 2.5.0. LA–CP–05–0369.
[50] Pichenot G, Guldbakke S, Asselineau B, Gressier V, Itié C, Klein H, Knauf K,
Lebreton L, Löb S, Pochon-Guérin L, Schlegel D, Sosaat W (2002) Characterisation of
spherical recoil proton proportional counters used for neutron spectrometry. Nucl Inst
Meth A 476, 165-169.
[51] Profio AE (1979) Radiation shielding and dosimetry. John Wiley and Sons, Inc.,
New York, NY.
[52] Roberts NJ, Douglas DJ, Lacoste V, Böttger R, Loeb S (2010) Comparison of long
counter measurements of monoenergetic and radionuclide source-based neutron fluence.
Radiat Meas 45, 1151-1153.
[53] Rohrlish, Carlson (1953) Positron-electron differences in energy loss and multiple
scattering. Phys Rev 93, (1954), 38-44.
[54] Shultis JK, Faw RE (2000) Radiation Shielding. American Nuclear Society, Inc.
[55] Sternheimer RM (1966) Density Effect for the Ionization Loss of Charged Particles.
Phys Rev Vol. 145, 1, 247-250.
[56] Tsvetkov I, Fominykh V (1978) Calorimeter for absolute measurement of absorbed
electron dose. Meas Tech Vol. 23, 6.
[57] Vega-Carrillo HR, Manzanares-Acuña E, Hernández-Dávila, Mercado Sánchez GA
(2005) Response matrix of a multisphere spectrometer with an
3
He proportional
counter. Rev Mex Fis 51 (1), 45-52.
[58] Williamson C, Boujot JP, Picard J (1966) Tables of range and stopping power of
chemical elements for charges particles of energy 0,5 to 500 MeV. Rapport CEA R 3042.
[59] Veinot KG, Hertel NE (2005) Effective quality factor for neutrons based on the
revised ICRP/ICRU recommendations. Rad Prot Dosim Vol 115 n° 1-4: 536-541.
[60] ICRP (1995) Conversion coefficients for Use in Radiological Against External Radiation. Publication 74.
