摘要
稀有事例探测是近几年热门的粒子物理前沿课题,如暗物质、无中微子双贝塔衰变、中微子-核子相干弹性散射等实验都在逐渐被规划和实施.进行稀有事例探测要求探测器有极佳的性能,同时对环境本底有很高的要求,因此探测器和相关材料的选择是稀有事例探测的一个重要课题.液氩因为成本低、闪烁性能好、体积限制较小等优势成为稀有事例探测器的一种重要介质.经过几十年的发展,单相液氩闪烁体探测器和两相氩时间投影室成为两种常见的液氩探测器类型,并开始被国内外各实验组应用于稀有事例探测实验中.本文首先对两种常见的液氩探测器的原理和特性进行介绍,然后详细介绍国内外相关稀有事例探测实验组对液氩探测器的研究和应用现状以及未来规划,最后讨论未来液氩探测器在稀有事例探测中的应用前景和优化方向.
Rare event detection is a frontier subject in particle physics and nuclear physics.In particular,dark matter detection,neutrino-free double beta decay and neutrino-nucleon coherent elastic scattering are being planned and implemented gradually.Rare event detection requires not only the detectors to possess excellent performances but also extremely low environmental background,so the selection of detectors and related materials is an important issue in rare event detection.Liquid argon has become an important scintillator material for scintillator detectors because of its low cost,good scintillation performance and large volume.Liquid argon was first studied in the 1940s as a sensitive material for ionizing radiation detectors.The first measurements of high-energy beta particles were obtained by using a liquid argon ionization chamber in 1953.The ICARUS group put forward the idea of constructing liquid argon temporal projection chamber,and made attempt to construct liquid argon temporal projection chamber in 1977.The scintillation light signals were collected for the first time in a liquid argon temporal projection chamber in 1999.Thus,the drift time of the particle can be obtained to determine the particle track.After development,single-phase liquid argon scintillator detector and two-phase argon time projection chamber have become two common types of liquid argon detectors,and have been extensively used in rare event detection experiments in recent years.For dark matter detection,the DEAP group and DarkSide group have achieved good results with single-phase liquid argon scintillation detector and two-phase argon time projection chamber,respectively.For neutrino-free double beta decay experiments,the GERDA group has done a lot of researches of liquid argon anti-coincidence system and applied the said system to experiments.The LEGEND group,which is the combination of GERDA and MAJORANA experimental group,upgraded the liquid argon anti-coincidence system which was applied to the following LEGEND-200 project.For neutrino-nucleon elastic scattering experiments,COHERENT obtained the latest results by using the liquid argon detectors.The Taishan neutrino-nucleon coherent elastic scattering project of the High Energy Institute of Chinese Academy of Sciences has also begun to study the feasibility of liquid argon anti-coincidence system.Finally,this paper discusses the direction of optimizing the liquid argon detector,such as exposure,background level and optical readout scheme,and gives a good prospect of liquid argon detector applied to rare event detection in the future.
作者
郑昊哲
刘圆圆
王力
程建平
Zheng Hao-Zhe;Liu Yuan-Yuan;Wang Li;Cheng Jian-Ping(Key Laboratory of Beam Technology of Ministry of Education,Joint Laboratory of Jinping Ultra-low Radiation Background Measurement of Ministry of Ecology and Environment and Beijing Normal University,College of Nuclear Science and Technology,Beijing Normal University,Beijing 100875,China;Department of Physics,Beijing Normal University,Beijing 100875,China)
出处
《物理学报》
SCIE
EI
CAS
CSCD
北大核心
2023年第5期42-55,共14页
Acta Physica Sinica
基金
国家重点研发计划(批准号:2022YFA1604701)
国家自然科学基金(批准号:1222200227)资助的课题。
关键词
稀有事例探测
闪烁体探测器
时间投影室
反符合测量
rare event detection
scintillation detector
time projection chamber
veto measure