Simulation of LHCb RICH detectors using GEANT4

被引:0
|
作者
Easo, S [1 ]
Belyaev, I [1 ]
Corti, G [1 ]
Jones, C [1 ]
Papanestis, J [1 ]
Pokorski, W [1 ]
Ranjard, F [1 ]
Robbe, P [1 ]
机构
[1] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England
关键词
Cherenkov detectors; GEANT;
D O I
暂无
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
LHCb is one of the experiments at the Large Hadron Collider at CERN. It aims to make precision measurements of CP violation in the B-meson decays. The Detector simulation of LHCb was developed using the GEANT4 software toolkit interfaced to the LHCb software framework named GAUDI. This is now being used for a large production run of 210 million events. An important feature of the LHCb experiment is the use of Ring Imaging Cherenkov Counters (RICH) for particle identification. The Cherenkov photons created in this detector are focused onto an array of photodetectors made of Hybrid Photodiodes. An brief overview of the GEANT4 based LHCb simulation program named GAUSS will be given with the main emphasis on RICH simulation and its verification.
引用
下载
收藏
页码:2182 / 2185
页数:4
相关论文
共 50 条
  • [21] Application of GEANT4 simulation on calibration of HPGe detectors for cylindrical environmental samples
    Nikolic, J. D.
    Jokovic, D.
    Todorovic, D.
    Rajacic, M.
    JOURNAL OF RADIOLOGICAL PROTECTION, 2014, 34 (02) : N47 - N55
  • [22] Interfacing Geant4, Garfield+ plus and Degrad for the simulation of gaseous detectors
    Pfeiffer, Dorothea
    De Keukeleere, Lennert
    Azevedo, Carlos
    Belloni, Francesca
    Biagi, Stephen
    Grichine, Vladimir
    Hayen, Leendert
    Hanu, Andrei R.
    Hrivnacova, Ivana
    Ivanchenko, Vladimir
    Krylov, Vladyslav
    Schindler, Heinrich
    Veenhof, Rob
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2019, 935 : 121 - 134
  • [23] A Geant4 simulation code for simulating optical photons in SPECT scintillation detectors
    Lo Meo, S.
    Bennati, P.
    Cinti, M. N.
    Lanconelli, N.
    Navarria, F. L.
    Pani, R.
    Pellegrini, R.
    Perrottaa, A.
    Vittorini, F.
    JOURNAL OF INSTRUMENTATION, 2009, 4
  • [24] Pulse shape simulations for organic scintillation detectors using Geant4
    Holroyd, Caroline
    Aspinall, Michael
    Deakin, Tom
    ANIMMA 2021 - ADVANCEMENTS IN NUCLEAR INSTRUMENTATION MEASUREMENT METHODS AND THEIR APPLICATIONS, 2021, 253
  • [25] Photon energy absorption coefficients for nuclear track detectors using Geant4 Monte Carlo simulation
    Singh, Vishwanath P.
    Medhat, M. E.
    Badiger, N. M.
    RADIATION PHYSICS AND CHEMISTRY, 2015, 106 : 83 - 87
  • [26] GEANT4 as a simulation framework in μSR
    Shiroka, T.
    Prokscha, T.
    Morenzoni, E.
    Sedlak, K.
    PHYSICA B-CONDENSED MATTER, 2009, 404 (5-7) : 966 - 969
  • [27] Signal pulse emulation for scintillation detectors using Geant4 Monte Carlo with light tracking simulation
    Ogawara, R.
    Ishikawa, M.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2016, 87 (07):
  • [28] Simulation of the RIBRAS Facility with GEANT4
    L. E. Tamayose
    J. C. Zamora
    G. F. Fortino
    D. Flechas
    Brazilian Journal of Physics, 2022, 52
  • [29] Geant4 simulation of the ABALONE photosensor
    Pieramico, G.
    Biondi, R.
    D'andrea, V
    Ferella, A. D.
    Mahlstedt, J.
    NUOVO CIMENTO C-COLLOQUIA AND COMMUNICATIONS IN PHYSICS, 2022, 45 (01):
  • [30] Industrial gamma computed tomography using high aspect ratio scintillator detectors (A Geant4 simulation)
    Askari, Mojtaba
    Taheri, Ali
    Iarijani, Majid Mojtahedzadeh
    Movafeghi, Amir
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2019, 923 : 109 - 117