Single-photon elimination in liquid scintillation counting with pulse shape discrimination and coincidence

被引:0
|
作者
Zhang, Pengpeng [1 ]
Li, Deyuan [1 ]
Li, Hui [1 ]
Zhang, Hui [1 ,2 ]
Zhang, Xuanru [1 ]
Ma, Yan [1 ,2 ]
Wang, Linjing [1 ]
Li, Hua [1 ,2 ]
Yan, Xuewen [1 ,2 ]
机构
[1] China Inst Radiat Protect, Nucl & Radiat Frontier Technol Res Ctr, Taiyuan 030006, Peoples R China
[2] Shanxi Prov Key Lab Translat Nucl Med & Precis Pro, Taiyuan 030006, Peoples R China
关键词
Liquid scintillation counting; Single-photon events; Fall time; Detection efficiency; Single-photon rejection ratio; CHEMI-LUMINESCENCE; FE-55;
D O I
10.1016/j.radmeas.2024.107299
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
Liquid scintillation counting is widely used in the rapid measurement of beta activity in environmental and biological samples. However, the single-photons generated by chemiluminescence and photoluminescence in liquid scintillation cocktails seriously affect the measurement accuracy of low-energy beta activity. A novel method based on the combination of the signal characteristic analysis and selective gate to eliminate the single-photon signal was developed. A preprocessing circuit made of a fast response time photomultiplier tube (PMT, Hamamatsu R9420), two charge-sensitive preamplifiers (CSP), two comparators, an analog switch and delay-line devices were designed and developed to verify the feasibility and effectiveness. The output signals from the last dynode were characterized in the pulse time and were used to discriminate the beta signals from the single-photon ones. The beta signals were "tagged" through pulse width detection, pulse width-amplitude transform and pulse-height discrimination with the first comparator, the first CSP and the second comparator. The "tagged" beta signal were applied to control the analog switch. The anode signals were specially delayed and then selected by the analog switch to achieve the single-photon signal elimination. Liquid scintillation cocktails containing C-14 or NaOH used as beta or single-photon sources were provided to verify the feasibility of the principle. The results showed that the typical fall time of the single-photon and beta signal was 16.05 ns and 43.17 ns. The single-photon rejection ratio is 2.76 x 10(-3) +/- 3.89 x 10(-5), and the detection efficiency is up to 93.02%+/- 0.59%.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] A novel liquid scintillation counter with single-photon elimination based on pulse width discrimination
    Li, Deyuan
    Wei, Ziyang
    Zhang, Pengpeng
    Ma, Yan
    Zhang, Hui
    Li, Hua
    Zhang, Xuanru
    Wang, Linjing
    JOURNAL OF INSTRUMENTATION, 2025, 20 (01):
  • [2] LIQUID SCINTILLATION SOLUTIONS FOR PULSE-SHAPE DISCRIMINATION
    BERLMAN, IB
    STEINGRABER, OJ
    NUCLEAR INSTRUMENTS & METHODS, 1973, 108 (03): : 587 - 591
  • [3] Single-photon counting
    Neil Savage
    Nature Photonics, 2009, 3 : 738 - 739
  • [4] Single-photon counting
    Savage, Neil
    NATURE PHOTONICS, 2009, 3 (12) : 738 - 739
  • [5] Digital liquid-scintillation counting and effective pulse-shape discrimination with artificial neural networks
    Langrock, Gert
    Wiehl, Norbert
    Kling, Hans-Otto
    Mendel, Matthias
    Naehler, Andrea
    Tharun, Udo
    Eberhardt, Klaus
    Trautmann, Norbert
    Kratz, Jens Volker
    Omtvedt, Jon-Petter
    Skarnemark, Gunnar
    RADIOCHIMICA ACTA, 2015, 103 (01) : 15 - 25
  • [6] A NEW SCHEME FOR LIQUID SCINTILLATION PULSE-SHAPE DISCRIMINATION
    CARRASCO, CH
    MCKLVEEN, JW
    TRANSACTIONS OF THE AMERICAN NUCLEAR SOCIETY, 1985, 50 (NOV): : 23 - 24
  • [7] Scintillation time dependence and pulse shape discrimination in liquid argon
    Lippincott, W. H.
    Coakley, K. J.
    Gastler, D.
    Hime, A.
    Kearns, E.
    McKinsey, D. N.
    Nikkel, J. A.
    Stonehill, L. C.
    PHYSICAL REVIEW C, 2008, 78 (03):
  • [8] SIMULTANEOUS ALPHA AND BETA PARTICLE ASSAY USING LIQUID SCINTILLATION-COUNTING WITH PULSE-SHAPE DISCRIMINATION
    MCKLVEEN, JW
    JOHNSON, WR
    HEALTH PHYSICS, 1975, 28 (01): : 5 - +
  • [9] MEASUREMENT OF SCINTILLATION PULSE SHAPES BY THE SINGLE-PHOTON TECHNIQUE - AN IMPROVED METHOD
    HALLAM, A
    JOURNAL OF PHYSICS E-SCIENTIFIC INSTRUMENTS, 1979, 12 (04): : 298 - 301
  • [10] Beyond single-photon counting
    Alexander V. Sergienko
    Nature Photonics, 2008, 2 : 268 - 269