论文标题

薄膜带电粒子跟踪器

Thin Film Charged Particle Trackers

论文作者

Kim, Sungjoon, Berry, Vikas, Metcalfe, Jessica, Sumant, Anirudha V.

论文摘要

硅跟踪探测器已增长,以覆盖多达数百平方米的较大表面积,甚至接管其他子检测器,例如量热计。但是,跟踪检测器性能的进一步改善更有可能是由于使高质量检测器与高质量探测器的能力所产生的,该质量检测器由高比例的活性传感器与死材料组成,其中死材料包括电气服务,冷却,机械支撑等。此外,当前构建这些探测器的成本和时间目前很大。因此,跟踪探测器的基本技术的进步可能需要查看一种更具变革性的方法,该方法可以具有最小的死亡材料覆盖面积,并且更容易,更快地构建。薄膜制造技术的进步有可能彻底改变近代的粒子探测器实验。一些薄膜沉积技术已经开发并广泛用于行业,以制作电视和监视器的LED屏幕。如果可以使用与当前硅技术相似的性能来制造几平方米的大面积薄膜检测器,则可以在将来的粒子物理实验中使用。本文旨在审查现有硅探测器的关键基本性能标准以及过去的研究,以使用薄膜和其他半导体材料作为粒子探测器,以探讨追求薄膜探测器的重要考虑因素和挑战。

Silicon tracking detectors have grown to cover larger surface areas up to hundreds of square meters, and are even taking over other sub-detectors, such as calorimeters. However, further improvements in tracking detector performance are more likely to arise from the ability to make a low mass detector comprised of a high ratio of active sensor to dead materials, where dead materials include electrical services, cooling, mechanical supports, etc. In addition, the cost and time to build these detectors is currently large. Therefore, advancements in the fundamental technology of tracking detectors may need to look at a more transformative approach that enables extremely large area coverage with minimal dead material and is easier and faster to build. The advancement of thin film fabrication techniques has the potential to revolutionize the next-to-next generation of particle detector experiments. Some thin film deposition techniques have already been developed and widely used in the industry to make LED screens for TV's and monitors. If large area thin film detectors on the order of several square meters can be fabricated with similar performance as current silicon technologies, they could be used in future particle physics experiments. This paper aims to review the key fundamental performance criteria of existing silicon detectors and past research to use thin films and other semi-conductor materials as particle detectors in order to explore the important considerations and challenges to pursue thin film detectors.

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