Geant4 physics validation for large HEP detectors

被引:10
|
作者
Wellisch, JP [1 ]
机构
[1] CERN, CH-1211 Geneva 23, Switzerland
关键词
simulation; validation; Monte Carlo; hadronic interactions;
D O I
10.1016/S0168-9002(03)00539-4
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Optimal exploitation of hadronic final states played a key role in successes of all recent collider experiment in HEP, and the ability to use hadronic final states will continue to be one of the decisive issues during the analysis phase of the LHC experiments. Monte Carlo techniques facilitate the use of hadronic final states, and have been developed for many years. We will give a brief overview of the physics underlying hadronic shower simulation, discussing the three basic types of modeling; data-driven, parametrization-driven, and theory-driven modeling at the example of geant4. We will confront-these different types of modeling with the stringent requirements posed by the LHC experiments on hadronic shower simulation, and report on the current status of the validation effort for large HEP applications. We will address robustness, and CPU and physics performance evaluations. (C) 2003 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:669 / 672
页数:4
相关论文
共 50 条
  • [31] Geant4 low energy electromagnetic physics
    Chauvie, S
    Depaola, G
    Ivanchenko, V
    Longo, F
    Nieminen, P
    Pia, MG
    PROCEEDINGS OF CHEP 2001, 2001, : 337 - 340
  • [32] Recent developments in Geant4 hadronic physics
    Folger, Gunter
    2013 IEEE NUCLEAR SCIENCE SYMPOSIUM AND MEDICAL IMAGING CONFERENCE (NSS/MIC), 2013,
  • [33] Geant4 Electromagnetic Physics for LHC Upgrade
    Ivanchenko, V. N.
    Apostolakis, J.
    Bagulya, A.
    Bogdanov, A.
    Grichine, V.
    Incerti, S.
    Ivantchenko, A.
    Maire, M.
    Pandola, L.
    Pokorski, W.
    Sawkey, D.
    Schaelicke, A.
    Schenk, M.
    Schwarz, S.
    Urban, L.
    20TH INTERNATIONAL CONFERENCE ON COMPUTING IN HIGH ENERGY AND NUCLEAR PHYSICS (CHEP2013), PARTS 1-6, 2014, 513
  • [34] Validation of Geant4 Pixel Detector Simulation Framework by Measurements With the Medipix Family Detectors
    Krapohl, David
    Schubel, Armin
    Frojdh, Erik
    Thungstrom, Goran
    Frojdh, Christer
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2016, 63 (03) : 1874 - 1881
  • [35] Progress in hadronic physics modelling in Geant4
    Apostolakis, John
    Folger, Gunter
    Grichine, Vladimir
    Heikkinen, Aatos
    Howard, Alexander
    Ivanchenko, Vladimir
    Kaitaniemi, Pekka
    Koi, Tatsumi
    Kosov, Mikhail
    Manuel Quesada, Jose
    Ribon, Alberto
    Uzhinskiy, Vladimir
    Wright, Dennis
    XIII INTERNATIONAL CONFERENCE ON CALORIMETRY IN HIGH ENERGY PHYSICS, 2009, 160
  • [36] Overview of Geant4 applications in medical physics
    Archambault, L
    Beaulieu, L
    Carrier, JF
    Castrovillari, F
    Chauvie, S
    Foppiano, F
    Ghiso, G
    Guatelli, S
    Incerti, S
    Lamanna, E
    Larsson, S
    Lopes, MC
    Peralta, L
    Pia, MG
    Rodrigues, P
    Tremblay, VH
    Trindade, A
    2003 IEEE NUCLEAR SCIENCE SYMPOSIUM, CONFERENCE RECORD, VOLS 1-5, 2004, : 1743 - 1745
  • [37] Simulation of LHCb RICH detectors using GEANT4
    Easo, S
    Belyaev, I
    Corti, G
    Jones, C
    Papanestis, J
    Pokorski, W
    Ranjard, F
    Robbe, P
    2004 IEEE NUCLEAR SCIENCE SYMPOSIUM CONFERENCE RECORD, VOLS 1-7, 2004, : 2182 - 2185
  • [38] Simulation of water Cerenkov detectors using GEANT4
    Anchordoqui, LA
    McCauley, TP
    Paul, T
    Reucroft, S
    Swain, JD
    Taylor, L
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2001, 97 : 196 - 198
  • [39] Experimental validation of proton physics models of Geant4 for calculating stopping power ratio
    Liu, Ruirui
    Zhao, Xiandong
    Medrano, Maria
    JOURNAL OF RADIOLOGICAL PROTECTION, 2022, 42 (02)
  • [40] Simulation of LHCb RICH detectors using GEANT4
    Easo, S
    Belyaev, I
    Corti, G
    Jones, C
    Papanestis, A
    Pokorski, W
    Ranjard, F
    Robbe, P
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2005, 52 (05) : 1665 - 1668