Recombination: An important effect in multigap resistive plate chambers

被引:5
|
作者
Doroud, K. [1 ,2 ]
Afarideh, H. [2 ]
Hatzifotiadou, D. [3 ]
Rahighi, J. [2 ]
Williams, M. C. S. [3 ]
Zichichi, A. [3 ,4 ]
机构
[1] World Lab, Geneva, Switzerland
[2] Amir Kabir Univ Technol, Tehran, Iran
[3] Sezione Ist Nazl Fis Nucl, Bologna, Italy
[4] CERN, PH Dept, Geneva, Switzerland
来源
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT | 2009年 / 610卷 / 03期
关键词
Resistive plate chambers; Multigap; Simulation; Recombination; MRPC;
D O I
10.1016/j.nima.2009.09.055
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
We have simulated the gas avalanche in a multigap resistive plate chamber (MRPC). The results were then compared with our data from the MRPC [1]. Up to now, the total amount of charge produced in a gas gap is considered to be given by the total number of positive ions generated by the gas avalanches. However, the total charge generated by the simulation program is much too large and is in conflict with our data. Our data indicate that nearly 100% of the negative ions recombine with the positive ions. The recombination effect dramatically reduces the amount of charge in the gas gap: a very important feature for MRPC technology especially for the rate capability. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:649 / 653
页数:5
相关论文
共 50 条
  • [1] Multigap Resistive Plate Chambers for Time of Flight Applications
    Wang, Yi
    Yu, Yancheng
    APPLIED SCIENCES-BASEL, 2021, 11 (01): : 1 - 23
  • [2] Characteristics and performance of the Multigap Resistive Plate Chambers of the EEE experiment
    Coccetti, F.
    Abbrescia
    Avanzini, C.
    Baldini, L.
    Ferroli, R. Baldini
    Batignani, G.
    Battaglieri, M.
    Boi, S.
    Bossini, E.
    Carnesecchi, F.
    Cicalo, C.
    Cifarelli, L.
    Coccia, E.
    Corvaglia, A.
    De Gruttola, D.
    De Pasquale, S.
    Fabbri, F.
    Falchieri, D.
    Galante, L.
    Garbini, M.
    Gemme, G.
    Gnesi, I
    Grazzi, S.
    Hatzifotiadou, D.
    La Rocca, P.
    Liu, Z.
    Lombardo, L.
    Mandaglio, G.
    Maron, G.
    Mazziotta, Mn
    Mulliri, A.
    Nania, R.
    Noferini, F.
    Nozzoli, F.
    Palmonari, F.
    Panareo, M.
    Panetta, M. P.
    Paoletti, R.
    Parvis, M.
    Pellegrino, C.
    Perasso, L.
    Pinazza, O.
    Pinto, C.
    Pisano, S.
    Riggi, F.
    Righini, G.
    Ripoli, C.
    Rizzi, M.
    Sartorelli, G.
    Scapparone, E.
    JOURNAL OF INSTRUMENTATION, 2020, 15 (11):
  • [3] Voltage Control System for a Multigap Resistive Plate Chambers Telescope
    Corvaglia, A.
    Panareo, M.
    Panetta, M. P.
    Pinto, C.
    2015 6TH IEEE INTERNATIONAL WORKSHOP ON ADVANCES IN SENSORS AND INTERFACES (IWASI), 2015, : 72 - 74
  • [4] Test and characterization of multigap resistive plate chambers for the EEE project
    Bossini, E.
    NUOVO CIMENTO C-COLLOQUIA AND COMMUNICATIONS IN PHYSICS, 2016, 39 (02):
  • [5] Multigap resistive plate chambers for EAS study in the EEE Project
    An, S.
    Antolini, R.
    Badala, A.
    Ferroli, R. Baldini
    Bencivenni, G.
    Blanco, F.
    Bressan, E.
    Chiavassa, A.
    Cifarellia, L.
    Cindolo, F.
    Coccia, E.
    De Pasquale, S.
    Di Giovanni, A.
    D'Inceccoe, M.
    Fabbri, F. L.
    Garbini, M.
    Giuliano, A.
    Gustavino, C.
    Hatzifotiadou, D.
    Imponente, G.
    Kim, J.
    La Rocca, P.
    Librizzi, F.
    Maggiora, A.
    Menghetti, H.
    Miozzi, S.
    Moro, R.
    Pace, E.
    Panareo, M.
    Pappalardo, G. S.
    Piragino, G.
    Riggi, F.
    Sartorelli, G.
    Sbarra, C.
    Selvi, M.
    Williams, C.
    Zichichi, A.
    Zuyeuski, R.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2007, 581 (1-2): : 209 - 212
  • [6] A Multigap Resistive Plate Chambers array for the Extreme Energy Events Project
    De Gruttola, D.
    Abbrescia, M.
    Avanzini, C.
    Baldini, L.
    Ferroli, R. Baldini
    Batignani, G.
    Bencivenni, G.
    Bossini, E.
    Bressan, E.
    Chiavassa, A.
    Cicalo, C.
    Cifarelli, L.
    Coccia, E.
    Corvaglia, A.
    De Pasquale, S.
    Di Giovanni, A.
    D'Incecco, M.
    Dreucci, M.
    Fabbri, F. L.
    Fattibene, E.
    Ferraro, A.
    Forster, R.
    Frolov, V.
    Galeotti, R.
    Garbini, M.
    Gemme, G.
    Gnesi, I.
    Grazzi, S.
    Gustavino, C.
    Hatzifotiadou, D.
    La Rocca, P.
    Maggiora, A.
    Maron, G.
    Martelli, B.
    Mazziotta, M. N.
    Miozzi, S.
    Noferini, F.
    Nozzoli, F.
    Panareo, M.
    Panetta, M. P.
    Paoletti, R.
    Perasso, L.
    Pilo, F.
    Piragino, G.
    Riggi, F.
    Righini, G. C.
    Rodriguez, A. R.
    Sartorelli, G.
    Scapparone, E.
    Schioppa, M.
    NUCLEAR AND PARTICLE PHYSICS PROCEEDINGS, 2016, 279 : 31 - 38
  • [7] Performance of multigap resistive plate chambers with pure Freon 134a
    Doroud, K.
    Hatzifotiadou, D.
    Kim, D. W.
    Kim, J. S.
    Kim, M. M.
    Seo, J.
    Williams, M. C. S.
    Zichichi, A.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2011, 629 (01): : 106 - 110
  • [8] Space charge limited avalanche growth in multigap resistive plate chambers
    A.N. Akindinov
    A. Alici
    F. Anselmo
    P. Antonioli
    Y. Baek
    M. Basile
    G. Cara Romeo
    L. Cifarelli
    F. Cindolo
    F. Cosenza
    A. De Caro
    S. De Pasquale
    A. Di Bartolomeo
    M. Fusco Girard
    M. Guida
    D. Hatzifotiadou
    A.B. Kaidalov
    D.W. Kim
    D.H. Kim
    S.M. Kisselev
    G. Laurenti
    K. Lee
    S.C. Lee
    E. Lioublev
    M.L. Luvisetto
    A. Margotti
    A.N. Martemiyanov
    R. Nania
    F. Noferini
    P. Otiougova
    F. Pierella
    P.A. Polozov
    E. Scapparone
    G. Scioli
    S.B. Sellitto
    A.V. Smirnitski
    M.M. Tchoumakov
    G. Valenti
    D. Vicinanza
    K.G. Voloshin
    M.C.S. Williams
    B.V. Zagreev
    C. Zampolli
    A. Zichichi
    The European Physical Journal C - Particles and Fields, 2004, 34 : s325 - s331
  • [9] Simple front-end electronics for multigap resistive plate chambers
    Llope, W. J.
    Nussbaum, T.
    Eppley, G.
    Velkovska, J.
    Chujo, T.
    Huang, S.
    Love, B.
    Valle, H.
    Ruan, L.
    Xu, Z.
    Bonner, B.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2008, 596 (03): : 430 - 433
  • [10] Cosmic ray tests of large area Multigap Resistive Plate Chambers
    An, Shaohui
    Hatzifotiadou, D.
    Kim, Jinsook
    Williams, M. C. S.
    Zichichi, A.
    Zuyeuski, R.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2007, 578 (01): : 139 - 145