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Geant4 developments and applications [PDF]
IEEE Transactions on Nuclear Science, 2006 Geant4 is a software toolkit for the simulation of the passage of particles through matter. It is used by a large number of experiments and projects in a variety of application domains, including high energy physics, astrophysics and space science, medical physics and radiation protection.J. Allison, K. Amako, J. Apostolakis, H. Araújo, P. A. Dubois, M. Asai, G. Barrand, R. Capra, S. Chauvie, R. Chytracek, G. Cirrone, G. Cooperman, G. Cosmo, G. Cuttone, G. Daquino, M. Donszelmann, M. Dressel, G. Folger, F. Foppiano, J. Generowicz, V. Grichine, S. Guatelli, P. Gumplinger, A. Heikkinen, I. Hrivnácová, A. Howard, S. Incerti, V. Ivanchenko, T. Johnson, F. Jones, T. Koi, R. Kokoulin, M. Kossov, H. Kurashige, V. Lara, S. Larsson, F. Lei, O. Link, F. Longo, M. Maire, A. Mantero, B. Mascialino, I. Mclaren, P. M. Lorenzo, K. Minamimoto, K. Murakami, P. Nieminen, L. Pandola, S. Parlati, L. Peralta, J. Perl, A. Pfeiffer, M. Pia, A. Ribon, P. Rodrigues, G. Russo, S. Sadilov, G. Santin, T. Sasaki, D. Smith, N. Starkov, Satoshi Tanaka, E. Tcherniaev, B. Tomé, A. Trindade, P. Truscott, L. Urban, M. Verderi, A. Walkden, J. Wellisch, David Williams, D. Wright, H. Yoshida +72 moresemanticscholar +6 more sourcesRecent developments in GEANT4 [PDF]
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2016 Geant4 is a software toolkit for the simulation of the passage of particles through matter. It is used by a large number of experiments and projects in a variety of application domains, including high energy physics, astrophysics and space science ...J. Allison, K. Amako, J. Apostolakis, P. Arce, M. Asai, T. Aso, E. Bagli, A. Bagulya, S. Banerjee, G. Barrand, B. Beck, A. Bogdanov, D. Brandt, J. Brown, H. Burkhardt, P. Canal, D. Cano-Ott, S. Chauvie, K. Cho, G. Cirrone, G. Cooperman, M. Cortés-Giraldo, G. Cosmo, G. Cuttone, G. Depaola, L. Desorgher, X. Dong, A. Dotti, V. Elvira, G. Folger, Z. Francis, A. Galoyan, L. Garnier, M. Gayer, K. Genser, V. Grichine, S. Guatelli, P. Guèye, P. Gumplinger, A. Howard, I. Hrivnácová, Soonwook Hwang, S. Incerti, A. Ivanchenko, V. Ivanchenko, F. Jones, S. Jun, P. Kaitaniemi, N. Karakatsanis, M. Karamitrosi, M. Kelsey, A. Kimura, T. Koi, H. Kurashige, A. Lechner, S. B. Lee, F. Longo, M. Maire, D. Mancusi, A. Mantero, E. Mendoza, B. Morgan, K. Murakami, T. Nikitina, L. Pandola, P. Paprocki, J. Perl, I. Petrović, M. Pia, W. Pokorski, J. Quesada, M. Raine, M. Reis, A. Ribon, A. R. Fira, F. Romano, G. Russo, G. Santin, Takashi Sasaki, D. Sawkey, J. Shin, I. Strakovsky, A. Taborda, Satoshi Tanaka, B. Tomé, T. Toshito, H. Tran, P. Truscott, L. Urban, V. Uzhinsky, J. Verbeke, M. Verderi, B. Wendt, H. Wenzel, D. Wright, D. Wright, T. Yamashita, J. Yarba, H. Yoshida +98 moresemanticscholar +9 more sourcesGeant4—a simulation toolkit [PDF]
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2003 Abstract G eant 4 is a toolkit for simulating the passage of particles through matter. It includes a complete range of functionality including tracking, geometry, physics models and hits. The physics processes offered cover a comprehensive range, including electromagnetic, hadronic and optical processes, a large set of long-lived particles, materials S. Agostinelli, J. Allison, K. Amako, J. Apostolakis, H. Araujo, P. Arce, M. Asai, D. Axen, S. Banerjee, G. Barrand, F. Behner, L. Bellagamba, J. Boudreau, L. Broglia, A. Brunengo, H. Burkhardt, S. Chauvie, J. Chuma, R. Chytracek, G. Cooperman, G. Cosmo, P. Degtyarenko, A. Dell’acqua, G. Depaola, D. Dietrich, R. Enami, A. Feliciello, C. Ferguson, H. Fesefeldt, G. Folger, F. Foppiano, A. Forti, S. Garelli, S. Giani, R. Giannitrapani, D. Gibin, J. J. G. Cadenas, I. González, G. Abril, G. Greeniaus, Walter Greiner, V. Grichine, A. Grossheim, S. Guatelli, P. Gumplinger, R. Hamatsu, K. Hashimoto, H. Hasui, A. Heikkinen, A. Howard, V. Ivanchenko, A. Johnson, F. Jones, J. Kallenbach, N. Kanaya, M. Kawabata, Y. Kawabata, M. Kawaguti, S. Kelner, P. R. C. Kent, A. Kimura, T. Kodama, R. Kokoulin, M. Kossov, H. Kurashige, E. Lamanna, T. Lampén, V. Lara, V. Lefébure, F. Lei, M. Liendl, W. Lockman, F. Longo, S. Magni, M. Maire, E. Medernach, K. Minamimoto, P. Freitas, Y. Morita, K. Murakami, M. Nagamatu, R. Nartallo, Petteri Nieminen, T. Nishimura, K. Ohtsubo, M. Okamura, S. O'neale, Y. Oohata, K. Paech, J. Perl, Andreas Pfeiffer, M. Pia, F. Ranjard, A. Rybin, S. Sadilov, E. D. Salvo, Giovanni Santin, T. Sasaki, N. Savvas, Y. Sawada, Stefan Scherer, S. Sei, V. Sirotenko, D. Smith, N. Starkov, H. Stoecker, J. Sulkimo, M. Takahata, Satoshi Tanaka, E. Tcherniaev, E. S. Tehrani, M. Tropeano, P. Truscott, H. Uno, L. Urban, P. Urban, M. Verderi, A. Walkden, W. Wander, H. Weber, J. Wellisch, T. Wenaus, David C. Williams, D. Wright, T. Yamada, H. Yoshida, D. Zschiesche +126 moresemanticscholar +5 more sourcesCeleritas: Accelerating Geant4 with GPUs
EPJ Web of ConferencesCeleritas [1] is a new Monte Carlo (MC) detector simulation code designed for computationally intensive applications (specifically, High Lumi- nosity Large Hadron Collider (HL-LHC) simulation) on high-performance heterogeneous architectures.Seth R. Johnson, J. Esseiva, E. Biondo, Philippe Canal, M. Demarteau, Thomas Evans, Soon Yung Jun, Guilherme Lima, Amanda Lund, P. Romano, S. Tognini +10 moresemanticscholar +3 more sourcesGeant4 electromagnetic physics progress [PDF]
EPJ Web of Conferences, 2020 The Geant4 electromagnetic (EM) physics sub-packages are a component of LHC experiment simulations. During long shutdown 2 for LHC, these packages are under intensive development and we report progress of EM physics in Geant4 versions 10.5 and 10.6 ...Ivanchenko Vladimir, Bagulya Alexander, Bakr Samer, Bandieramonte Marilena, Bernard Denis, Bordage Marie-Claude, Burkhardt Helmut, Dondero Paolo, Grichine Vladimir, Guatelli Susanna, Hřivnáčová Ivana, Incerti Sebastien, Kadri Omrane, Konstantinov Dmitri, Kyriakou Ioanna, Maire Michel, Mantero Alfonso, RamosMendez Jose, Novak Mihaly, Pandola Luciano, Sakata Dousatsu, Sawkey Daren, Semeniouk Igor, Shin Wook Geun, Tran Ngoc Hoang, Urban Laszlo +25 moredoaj +1 more sourceG4CMP: Condensed matter physics simulation using the Geant4 toolkit [PDF]
Nuclear Instruments and Methods in Physics Research Section A : Accelerators, Spectrometers, Detectors and Associated Equipment, 2023 G4CMP simulates phonon and charge transport in cryogenic semiconductor crystals using the Geant4 toolkit. The transport code is capable of simulating the propagation of acoustic phonons as well as electron and hole charge carriers.M. Kelsey, R. Agnese, Y. Alam, I. A. Langroudy, E. Azadbakht, D. Brandt, R. Bunker, B. Cabrera, Y.-Y. Chang, H. Coombes, R. Cormier, M. Diamond, E. Edwards, E. Figueroa-Feliciano, J. Gao, P. M. Harrington, Z. Hong, M. Hui, N. Kurinsky, R. Lawrence, B. Loer, M. G. Masten, É. Michaud, E. Michielin, J. Miller, V. Novati, N. Oblath, J. Orrell, W. Perry, P. Redl, T. Reynolds, T. Saab, B. Sadoulet, K. Serniak, J. Singh, Z. Speaks, C. Stanford, J. R. Stevens, J. Strube, D. Toback, J. Ullom, B. Vandevender, M. Vissers, M. Wilson, J. Wilson, B. Zatschler, S. Zatschler +46 moresemanticscholar +1 more sourceNew Developments in the VMC Project [PDF]
EPJ Web of Conferences, 2020 Virtual Monte Carlo (VMC) provides a unified interface to different detector simulation transport engines such as GEANT3 and GEANT4. Since recently all the VMC packages (the VMC core library, also included in ROOT, and the GEANT3 and GEANT4 VMC) are ...Hřivnáčová Ivana, Volkel Benediktdoaj +1 more sourceGeant4 simulation model of electromagnetic processes in oriented crystals for accelerator physics [PDF]
Journal of the Korean Physical Society, 2023 Electromagnetic processes of charged particles interaction with oriented crystals provide a wide variety of innovative applications such as beam steering, crystal-based extraction/collimation of leptons and hadrons in an accelerator, a fixed-target ...A. Sytov, L. Bandiera, K. Cho, S. Hwang, G. Cirrone, L. Pandola, S. Guatelli, Amir Rosenfeld, V. Haurylavets, V. Tikhomirov, V. Ivanchenko +10 moresemanticscholar +1 more source