论文标题
地下设施的支持功能
Supporting Capabilities For Underground Facilities
论文作者
论文摘要
2021年的粒子物理社区研究被称为“雪摩斯2021”,已将世界各地的粒子物理学家汇集在一起,在未来十年中为该领域创造了统一的愿景。重点领域之一是地下设施(UF)边界,该设施涉及地下基础设施以及基于地下实验的科学计划和目标。为此,UF支持功能主题小组为社区创建了两项调查,以确定设施的支持能力与当前和将来实验所需的差距之间的潜在差距。本报告中讨论了调查的功能,包括地下清洁室空间尺寸和规格,减少ra的空间需求和可用性,测定需求以及其他地下空间需求以及未来实验的时间表。结果表明,未来,较大的实验将越来越多地需要更大的清洁室中的地下组件,通常具有更好的底漆系统,并提高了环境污染物的监测能力。大多数测定需求可以通过现有的全球能力来满足设施和实验之间的组织合作。对于某些实验的某些材料,需要提高测定敏感性,用于散装和表面放射性,并且对ra散发非常有益。
The 2021 particle physics community study, known as "Snowmass 2021", has brought together particle physicists around the world to create a unified vision for the field over the next decade. One of the areas of focus is the Underground Facilities (UF) frontier, which addresses underground infrastructure and the scientific programs and goals of underground-based experiments. To this effect, the UF Supporting Capabilities topical group created two surveys for the community to identify potential gaps between the supporting capabilities of facilities and those needed by current and future experiments. Capabilities surveyed are discussed in this report and include underground cleanroom space size and specifications, radon-reduced space needs and availability, the assay need and other underground space needs as well timeline for future experiments. Results indicate that future, larger experiments will increasingly require underground assembly in larger, cleaner cleanrooms, often with better radon-reduction systems and increased monitoring capability for ambient contaminants. Most assay needs may be met by existing worldwide capabilities with organized cooperation between facilities and experiments. Improved assay sensitivity is needed for assays of bulk and surface radioactivity for some materials for some experiments, and would be highly beneficial for radon emanation.