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by Allison, J and Amako, K and Apostolakis, J and Arce, P and Asai, M and Aso, T and Bagli, E and Bagulya, A and Banerjee, S and Barrand, G and Beck, B.R and Bogdanov, A.G and Brandt, D and Brown, J.M.C and Burkhardt, H and Canal, Ph and Cano-Ott, D and Chauvie, S and Cho, K and Cirrone, G.A.P and Cooperman, G and Cortés-Giraldo, M.A and Cosmo, G and Cuttone, G and Depaola, G and Desorgher, L and Dong, X and Dotti, A and Elvira, V.D and Folger, G and Francis, Z and Galoyan, A and Garnier, L and Gayer, M and Genser, K.L and Grichine, V.M and Guatelli, S and Guèye, P and Gumplinger, P and Howard, A.S and Hřivnáčová, I and Hwang, S and Incerti, S and Ivanchenko, A and Ivanchenko, V.N and Jones, F.W and Jun, S.Y and Kaitaniemi, P and Karakatsanis, N and Karamitros, M and Kelsey, M and Kimura, A and Koi, T and Kurashige, H and Lechner, A and Lee, S.B and Longo, F and Maire, M and Mancusi, D and Mantero, A and Mendoza, E and Morgan, B and Murakami, K and Nikitina, T and Pandola, L and Paprocki, P and Perl, J and Petrović, I and Pia, M.G and Pokorski, W and Quesada, J.M and Raine, M and Reis, M.A and Ribon, A and Ristić Fira, A and Romano, F and Russo, G and Santin, G and Sasaki, T and Sawkey, D and Shin, J.I and Strakovsky, I.I and Taborda, A and Tanaka, S and Tomé, B and Toshito, T and Tran, H.N and Truscott, P.R and Urban, L and Uzhinsky, V and Verbeke, J.M and Verderi, M and Wendt, B.L and Wenzel, H and Wright, D.M and Wright, D.H and Yamashita, T and Yarba, J and Yoshida, H and SLAC National Accelerator Lab., Menlo Park, CA (United States) and Fermi National Accelerator Lab. (FNAL), Batavia, IL (United States) and George Washington Univ., Washington, DC (United States) and Lawrence Livermore National Lab. (LLNL), Livermore, CA (United States)
Nuclear Inst. and Methods in Physics Research, A, ISSN 0168-9002, 11/2016, Volume 835, Issue C, pp. 186 - 225
Journal Article
Nuclear Inst. and Methods in Physics Research, B, ISSN 0168-583X, 2010, Volume 268, Issue 14, pp. 2343 - 2354
Journal Article
Medical Physics, ISSN 0094-2405, 09/2010, Volume 37, Issue 9, pp. 4692 - 4708
Purpose: TheGEANT4 general-purpose Monte Carlo simulation toolkit is able to simulate physical interaction processes of electrons, hydrogen and helium atoms... 
Protons | dosimetry | biological effects of ionising radiation | Computer software | Elasticity | Collisional energy loss | Monte Carlo methods | Ionizing radiation | physiological models | Monte Carlo | Electron scattering | Effects of ionizing radiation on biological systems | Probability theory, stochastic processes, and statistics | microdosimetry | Water vapor | biomolecular effects of radiation | Water energy interactions | Monte Carlo simulations | Ionization | DNA | GEANT4 | GEANT4‐DNA | statistical analysis | medical computing | Dosimetry/exposure assessment | GEANT4-DNA | ALPHA-PARTICLES | H2O | ELASTIC-SCATTERING | TRACK STRUCTURE CODE | ELECTRON-IMPACT | CHARGE EXCHANGE | VAPOR | BETHE SURFACE | LIQUID WATER | IONIZATION | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Models, Theoretical | Water | Radiometry | Scattering, Radiation | Software | DNA Damage | Helium | Monte Carlo Method | Electrons | Biological Physics | Physics | MICRODOSIMETRY | MONTE CARLO METHOD | ELECTRONS | HYDROGEN IONS 1 PLUS | RADIATION PROTECTION AND DOSIMETRY | WATER VAPOR | COMPARATIVE EVALUATIONS | DIFFERENTIAL CROSS SECTIONS | IONIZING RADIATIONS | COMPUTERIZED SIMULATION | HYDROGEN | RECOMMENDATIONS | RADIOLOGY AND NUCLEAR MEDICINE | BIOLOGICAL RADIATION EFFECTS | COMPUTER CODES | ELECTROMAGNETIC INTERACTIONS | HELIUM IONS | HELIUM | LIQUIDS | WATER
Journal Article
by Bevan, A J and Golob, B and Mannel, Th and Prell, S and Yabsley, B D and Aihara, H and Anulli, F and Arnaud, N and Aushev, T and Beneke, M and Beringer, J and Bianchi, F and Bigi, I I and Bona, M and Brambilla, N and Brodzicka, J and Chang, P and Charles, M J and Cheng, C H and Cheng, H.-Y and Chistov, R and Colangelo, P and Coleman, J P and Drutskoy, A and Druzhinin, V P and Eidelman, S and Eigen, G and Eisner, A M and Faccini, R and Flood, K T and Gambino, P and Gaz, A and Gradl, W and Hayashii, H and Higuchi, T and Hulsbergen, W D and Hurth, T and Iijima, T and Itoh, R and Jackson, P D and Kass, R and Kolomensky, Yu G and Kou, E and Križan, P and Kronfeld, A and Kumano, S and Kwon, Y J and Latham, T E and Leith, D W. G. S and Lüth, V and Martinez-Vidal, F and Meadows, B T and Mussa, R and Nakao, M and Nishida, S and Ocariz, J and Olsen, S L and Pakhlov, P and Pakhlova, G and Palano, A and Pich, A and Playfer, S and Poluektov, A and Porter, F C and Robertson, S H and Roney, J M and Roodman, A and Sakai, Y and Schwanda, C and Schwartz, A J and Seidl, R and Sekula, S J and Steinhauser, M and Sumisawa, K and Swanson, E S and Tackmann, F and Trabelsi, K and Uehara, S and Uno, S and van de Water, R and Vasseur, G and Verkerke, W and Waldi, R and Wang, M Z and Wilson, F F and Zupan, J and Zupanc, A and Adachi, I and Albert, J and Banerjee, Sw and Bellis, M and Ben-Haim, E and Biassoni, P and Cahn, R N and Cartaro, C and Chauveau, J and Chen, C and Chiang, C C and Cowan, R and Dalseno, J and ... and Fermi National Accelerator Lab. (FNAL), Batavia, IL (United States) and Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
The European Physical Journal C, ISSN 1434-6044, 11/2014, Volume 74, Issue 11, pp. 1 - 928
Journal Article
The European Physical Journal A, ISSN 1434-6001, 09/2004, Volume 21, Issue 3, pp. 407 - 417
The Binary Cascade introduces a novel approach towards intra-nuclear cascade calculations. Like many QMD codes, it uses a detailed 3-dimensional model of the... 
Physics | QUANTUM MOLECULAR-DYNAMICS | PIONS | INTRANUCLEAR CASCADE | PRODUCTION CROSS-SECTIONS | HEAVY-ION COLLISIONS | PHYSICS, NUCLEAR | MODEL | PROTONS | PHYSICS, PARTICLES & FIELDS | Analysis | Nuclear physics
Journal Article