The anti-coincidence detector for the GLAST large area telescope

被引:39
作者
Moiseev, A. A. [1 ]
Hartman, R. C.
Ormes, J. F.
Thompson, D. J.
Amato, M. J.
Johnson, T. E.
Segal, K. N.
Sheppard, D. A.
机构
[1] Univ Space Res Assoc, Columbia, MD 21044 USA
[2] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
关键词
gamma-ray telescope; plastic scintillating detector; particle detection efficiency;
D O I
10.1016/j.astropartphys.2006.12.003
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
This paper describes the design, fabrication and testing of the Anti-Coincidence Detector (ACD) for the Gamma-ray Large Area Space Telescope (GLAST) Large Area Telescope (LAT). The ACD is LATs first-level defense against the charged cosmic ray background that outnumbers the gamma rays by 3-5 orders of magnitude. The ACD covers the top and four sides of the LAT tracking detector, requiring a total active area of similar to 8.3 m(2). The ACD detector utilizes plastic scintillator tiles with wavelength shifting fiber readout. In order to suppress self-veto by shower particles at high gamma-ray energies, the ACD is segmented into 89 tiles of different sizes. The overall ACD efficiency for detection of singly charged relativistic particles entering the tracking detector from the top or sides of the LAT exceeds the required 0.9997. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:339 / 358
页数:20
相关论文
共 18 条
  • [1] Beam test of gamma-ray large area space telescope components
    Atwood, WB
    Ritz, S
    Anthony, P
    Bloom, ED
    Bosted, PE
    Bourotte, J
    Chaput, C
    Chen, X
    Chenette, DL
    Engovatov, D
    Erickson, R
    Fieguth, T
    Fleury, P
    Gearhart, R
    Godfrey, G
    Grove, JE
    Hernando, JA
    Hirayama, M
    Jaggar, S
    Johnson, RP
    Johnson, WN
    Jones, BB
    Kröger, W
    Lin, YC
    Meetre, C
    Michelson, PF
    Milne, PA
    Moiseev, A
    Nolan, P
    Norris, JP
    Oreglia, M
    Ormes, JF
    Phlips, BF
    Pocar, A
    Sadrozinski, HFW
    Szalata, Z
    Thompson, DJ
    Tompkins, WF
    [J]. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2000, 446 (03) : 444 - 460
  • [2] The energy spectra and relative abundances of electrons and positrons in the galactic cosmic radiation
    Barwick, SW
    Beatty, JJ
    Bower, CR
    Chaput, CJ
    Coutu, S
    de Nolfo, GA
    DuVernois, MA
    Ellithorpe, D
    Ficenec, D
    Knapp, J
    Lowder, DM
    McKee, S
    Muller, D
    Musser, JA
    Nutter, SL
    Schneider, E
    Swordy, SP
    Tarle, G
    Tomasch, AD
    Torbet, E
    [J]. ASTROPHYSICAL JOURNAL, 1998, 498 (02) : 779 - 789
  • [3] Enhanced meteoroid and orbital debris shielding
    Christiansen, EL
    Crews, JL
    Williamsen, JE
    Robinson, JH
    Nolen, AM
    [J]. INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 1995, 17 (1-3) : 217 - 228
  • [4] FICHTEL C, 1996, A AS, V120, P23
  • [5] Global oscillations at low frequency from the SOHO mission (GOLF)
    Gabriel, AH
    Grec, G
    Charra, J
    Robillot, JM
    Cortes, TR
    TurckChieze, S
    Bocchia, R
    Boumier, P
    Cantin, M
    Cespedes, E
    Cougrand, B
    Cretolle, J
    Dame, L
    Decaudin, M
    Delache, P
    Denis, N
    Duc, R
    Dzitko, H
    Fossat, E
    Fourmond, JJ
    Garcia, RA
    Gough, D
    Grivel, C
    Herreros, JM
    Lagardere, H
    Moalic, JP
    Palle, PL
    Petrou, N
    Sanchez, M
    Ulrich, R
    VanderRaay, HB
    [J]. SOLAR PHYSICS, 1995, 162 (1-2) : 61 - 99
  • [6] Gehrels N, 1999, ASTROPART PHYS, V11, P277, DOI 10.1016/S0927-6505(99)00066-3
  • [7] HINK PL, 1991, SPIE, V1549, P193
  • [8] HUGHES EB, 1980, IEEE T NUCL SCI, V27, P364
  • [9] LIOU YC, 2002, TP2002210780 NASA
  • [10] Meegan C, 2003, AIP CONF PROC, V662, P469