Monte Carlo simulations of microgap gas-filled proportional counters

被引:1
|
作者
Kundu, A [1 ]
Morton, EJ [1 ]
Key, MJ [1 ]
Luggar, RD [1 ]
机构
[1] Univ Surrey, Sch Phys Sci, Dept Phys, Guildford GU2 5XH, Surrey, England
关键词
Monte Carlo; microgap; argon; methane; non-linear effects;
D O I
10.1117/12.363695
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Monte Carlo calculations have been widely employed to model the interactions of electrons and photons as they travel through and collide with matter. This approach has been applied with some success to the problem of simulating the response of gas-filled proportional counters, mapping out electron transport through the electric field on an interaction-by-interaction basis. These studies focus on the multiplication of electrons as they drift into the high electric field region of the detector and subsequently avalanche. We are using this technique in our new simulation code to depict avalanching in microgap gas-filled proportional counters, in order to investigate the variation elf two principle detector properties with the anode pitch used in the detector. Spatial resolution information can be obtained by measuring the lateral diffusion distance of an electron from the point where it is liberated to the point in the detector where it initiates an avalanche. By also modeling the motion of the positive ions that are left behind fi om the initial avalanche, we are able to gauge the effect of space charge distortion on subsequent avalanches. This effect is particularly important at the high X-ray count rates that we are interested in for our ultimate aim, which is to use the detectors as part of a high-speed tomography system for imaging multiphase oil/water/gas flows.
引用
收藏
页码:90 / 97
页数:8
相关论文
共 50 条
  • [21] GAS GAIN IN NEON HYDROGEN FILLED GASEOUS PROPORTIONAL-COUNTERS
    OTHMAN, A
    KENAWY, MA
    MORSEY, A
    INDIAN JOURNAL OF PURE & APPLIED PHYSICS, 1991, 29 (06) : 396 - 401
  • [22] Numerical simulation of argon-methane gas filled proportional counters
    Kundu, A
    Morton, EJ
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 1999, 422 (1-3): : 286 - 290
  • [23] A beginners' guide to gas-filled proportional detectors with delay line readout
    Petrascu, AM
    Koch, MHJ
    Gabriel, A
    JOURNAL OF MACROMOLECULAR SCIENCE-PHYSICS, 1998, B37 (04): : 463 - 483
  • [24] LOW-BACKGROUND GAS-FILLED ELECTRON AND X-RAY COUNTERS
    KOCHAROV, GE
    NAIDENOV, VO
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES-USSR, 1966, (03): : 515 - &
  • [25] The Monte-Carlo Exchange Method for radiative budget computation in a gas-filled two-dimensional enclosure
    Dufresne, JL
    Fournier, R
    Grandpeix, JY
    COMPTES RENDUS DE L ACADEMIE DES SCIENCES SERIE II FASCICULE B-MECANIQUE PHYSIQUE ASTRONOMIE, 1998, 326 (01): : 33 - 38
  • [26] Simulations of a gas-filled helical muon beam cooling channel
    Yonehara, K
    Kaplan, D
    Beard, K
    Bogacz, SA
    Derbenev, Y
    Johnson, R
    Paul, K
    Roberts, T
    2005 IEEE PARTICLE ACCELERATOR CONFERENCE (PAC), VOLS 1-4, 2005, : 3474 - 3476
  • [27] MONTE-CARLO CALCULATION OF RECOIL SPECTRA IN HE-4 PROPORTIONAL COUNTERS
    ATWATER, HF
    NUCLEAR INSTRUMENTS & METHODS, 1972, 100 (03): : 453 - &
  • [28] Algorithm to accelerate simulations of simultaneous heat and gas transfer in gas-filled foams
    Chalmers Univ of Technology, Goteborg, Sweden
    J Therm Envelope Build Sci, (230-248):
  • [29] Microdosimetric response of proportional counters filled with different tissue equivalent gas mixtures
    Kowalski, T. Z.
    JOURNAL OF INSTRUMENTATION, 2015, 10
  • [30] Gas gain limitation in low pressure proportional counters filled with TEG mixtures
    Kowalski, T. Z.
    JOURNAL OF INSTRUMENTATION, 2014, 9