Topics

No keywords indexed for this article. Browse by subject →

References
44
[1]
Aiginger "The fluka code: new developments and application to 1 gev/n iron beams" Adv. Space Res. (2005) 10.1016/j.asr.2005.01.090
[2]
Alt "Inclusive production of charged pions in p + c collisions at 158-gev/c beam momentum" Eur. Phys. J. (2007) 10.1140/epjc/s10052-006-0165-7
[3]
Andersen "The FLUKA code for space applications: recent developments" Adv. Space Res. (2004) 10.1016/j.asr.2003.03.045
[4]
Association, N.E.M., 1996. Digital imaging and communications in medicine (dicom). NEMA Standard Publications PS 3.
[5]
Large departures from Landau distributions for high-energy particles traversing thin Si and Ge targets

J.F. Bak, A. Burenkov, J.B.B. Petersen et al.

Nuclear Physics B 1987 10.1016/0550-3213(87)90234-3
[6]
Battistoni, G., Cerutti, F., Ferrari, A., 2006a. The physics of high energy reactions. In: Gadioli, E. (Ed.), 11th Int. Conf. on Nuclear Reaction Mechanisms. p. 483.
[7]
Battistoni, G., Muraro, S., Sala, P., Cerutti, F., Ferrari, A., Roesler, S., Fassò, A., Ranft, J., September 6–8 2006b. The fluka code: Description and benchmarking. In: Albrow, M., Raja, R. (Eds.), Hadronic Shower Simulation Workshop 2006. Vol. 896 of AIP Conference Proceedings. Fermilab, U.S.A., pp. 31–49. 10.1063/1.2720455
[8]
Blann "Hybrid model for pre-equilibrium decay in nuclear reactions" Phys. Rev. Lett. (1971) 10.1103/physrevlett.27.337
[9]
Blann "Importance of the nuclear density distribution on pre-equilibrium decay" Phys. Rev. Lett. (1972) 10.1103/physrevlett.28.757
[10]
Blann "Precompound analyses of spectra and yields following nuclear capture of stopped π−" Phys. Rev. C (1983) 10.1103/physrevc.28.1648
[11]
Global test of modified precompound decay models

M. Blann, H. K. Vonach

Physical Review C 1983 10.1103/physrevc.28.1475
[12]
Brugger, M., et al., 2005. In: Radiat. Prot. Dosim. vol. 116. pp. 12–15.
[13]
Capella "Dual parton model" Phys. Rep. (1994) 10.1016/0370-1573(94)90064-7
[14]
Cerutti, F., et al., 2006. J. Phys. Conf. Ser. 41, 212. 10.1088/1742-6596/41/1/021
[15]
Chytracek "The geometry description markup language" Proc. Comput. Energy Nuclear Phys. (2001)
[16]
Collaboration, T.H., 2006. Nucl. Phys. B732, 1.
[17]
Collazuol "Hadronic models and experimental data for the neutrino beam production" Nucl. Instr. Meth. A (2000) 10.1016/s0168-9002(00)00152-2
[18]
Cullen, D., Hubbell, J., Kissel, L., 1997. Epdl97: the evaluated photon data library, ’97 version. Tech. Rep. UCRL–50400, vol. 6, Rev. 5. 10.2172/295438
[19]
Enqvist "Isotopic yields and kinetic energies of primary residues in 1 a gev 208pb" Nucl. Phys. (2001) 10.1016/s0375-9474(00)00563-7
[20]
Fassò, A., Ferrari, A., Ranft, J., Sala, P., 1995. Fluka: performances and applications in the intermediate energy range. In: Specialists’ Meeting on Shielding Aspects of Accelerators, Targets & Irradiation Facilities. pp. 287–304.
[21]
Fassò, A., Ferrari, A., Sala, P., 1997. New developments in fluka modelling of hadronic and em interactions. In: Hirayama, H. (Ed.), SARE-3. KEK report Proceedings 97-5, p. 32.
[22]
Fassò "Electron–photon transport in fluka: status" (2001)
[23]
Fassò "Fluka realistic modeling of radiation induced damage" Progress in Nuclear Science and Technology (2011) 10.15669/pnst.2.769
[24]
Ferrari "A new model for hadronic interactions at intermediate energies for the fluka code" (1994)
[25]
Ferrari, A., Sala, P., 1998. The physics of high energy reactions. In: Gandini, A., Reffo, G. (Eds.), Workshop on Nuclear Reaction Data and Nuclear Reactors Physics, Design and Safety. p. 424.
[26]
Ferrari, A., Sala, P., Fassò, A., Ranft, J., 2005. Fluka: a multi-particle transport code. Tech. Rep. CERN-2005-10, INFN/TC-05/11, SLAC-R-773. 10.2172/877507
[27]
Ferrari "An improved multiple scattering model for charged particle transport" Nucl. Instr. Meth. B (1992) 10.1016/0168-583x(92)95359-y
[28]
Franz "Neutron-induced production of protons, deuterons and tritons on copper and bismuth" Nucl. Phys. (1990) 10.1016/0375-9474(90)90360-x
[29]
Garzelli, M., et al., 2006. In: Physics Conference Series, vol. 41. p. 519. 10.1088/1742-6596/41/1/059
[30]
Glauber "High-energy scattering of protons by nuclei" Nucl. Phys. B (1970) 10.1016/0550-3213(70)90468-2
[31]
Gribov "Glauber corrections and the interaction between high-energy hadrons and nuclei" Sov. Phys. JETP (1969)
[32]
H.G. Hughes, et al., 1999. Mcnpx for neutron-proton transport. In: Math. & Comp. ANS. Madrid Spain.
[33]
Ishibashi J. Nucl. Sci. Technol. (1997) 10.1080/18811248.1997.9733705
[34]
Meier Nucl. Sci. Eng. (1989) 10.13182/nse89-a27480
[35]
Mitaroff Rad. Prot. Dosim. (2002) 10.1093/oxfordjournals.rpd.a006075
[36]
Roesler "The monte carlo event generator dpmjet-iii" (2001)
[37]
Shlomo "Energy level density of nuclei" Nucl. Phys. A (1992) 10.1016/0375-9474(92)90233-a
[38]
Sihver Jpn. J. Med. Phys. (1998)
[39]
Smeets "Prompt gamma imaging with a slit camera for real-time range control in proton therapy" Phys. Med. Biol. (2012) 10.1088/0031-9155/57/11/3371
[40]
Investigating the accuracy of the FLUKA code for transport of therapeutic ion beams in matter

Florian Sommerer, Katia Parodi, Alfredo Ferrari et al.

Physics in Medicine and Biology 2006 10.1088/0031-9155/51/17/017
[41]
Sorge "Relativistic quantum molecular dynamics approach to nuclear collisions at ultrarelativistic energies" Nucl. Phys. (1989) 10.1016/0375-9474(89)90641-6
[42]
van Rossum, G., 1991. Python programming language http://www.python.org. URL http://www.python.org.
[43]
Boccone, V., et al., 2013. Beam–machine interaction at the cern lhc. In: Nuclear Data. 10.1016/j.nds.2014.07.050
[44]
Vlachoudis "Flair: A powerful but user friendly graphical interface for fluka" (2009)
Cited By
871
Metrics
871
Citations
44
References
Details
Published
Aug 01, 2015
Vol/Issue
82
Pages
10-18
License
View
Funding
Department of Energy Award: DE-AC02-76SF00515
Cite This Article
Giuseppe Battistoni, Till Boehlen, Francesco Cerutti, et al. (2015). Overview of the FLUKA code. Annals of Nuclear Energy, 82, 10-18. https://doi.org/10.1016/j.anucene.2014.11.007
Related

You May Also Like