Aalseth C E, Humble P H, Mace E K, Orrell J L, Seifert A, Williams R M
Pacific Northwest Laboratory, Richland, WA 99352, USA.
Pacific Northwest Laboratory, Richland, WA 99352, USA.
Appl Radiat Isot. 2016 Feb;108:92-99. doi: 10.1016/j.apradiso.2015.12.033. Epub 2015 Dec 9.
Development of ultra low background gas proportional counters has made the contribution from naturally occurring radioactive isotopes - primarily α and β activity in the uranium and thorium decay chains - inconsequential to instrumental sensitivity levels when measurements are performed in above ground surface laboratories. Simple lead shielding is enough to mitigate against gamma rays as gas proportional counters are already relatively insensitive to naturally occurring gamma radiation. The dominant background in these surface laboratory measurements using ultra low background gas proportional counters is due to cosmic ray generated muons, neutrons, and protons. Studies of measurements with ultra low background gas proportional counters in surface and underground laboratories as well as radiation transport Monte Carlo simulations suggest a preferred conceptual design to achieve the highest possible sensitivity from an array of low background gas proportional counters when operated in a surface laboratory. The basis for a low background gas proportional counter array and the preferred shielding configuration is reported, especially in relation to measurements of radioactive gases having low energy decays such as (37)Ar.
超低本底气体正比计数器的发展使得在地面实验室进行测量时,天然存在的放射性同位素(主要是铀和钍衰变链中的α和β活性)对仪器灵敏度水平的影响微不足道。由于气体正比计数器对天然存在的伽马辐射本来就相对不敏感,简单的铅屏蔽就足以减轻伽马射线的影响。在这些使用超低本底气体正比计数器的地面实验室测量中,主要背景是宇宙射线产生的μ子、中子和质子。在地面和地下实验室使用超低本底气体正比计数器进行测量的研究以及辐射输运蒙特卡罗模拟表明,当在地面实验室运行时,有一种首选的概念设计可从一系列低本底气体正比计数器中实现尽可能高的灵敏度。报告了低本底气体正比计数器阵列的基础以及首选的屏蔽配置,特别是与测量具有低能衰变的放射性气体(如³⁷Ar)有关的情况。