论文标题
未来跟踪探测器的轻巧和高度传导的支撑结构
Light-weight and highly thermally conductive support structures for future tracking detectors
论文作者
论文摘要
探测器力学可以在检测器的性能中发挥重要作用,通常需要深入研究总质量,减少总质量的新方法,以及更集成的设计概念,以节省材料预算和优化性能。未来山脉的粒子探测器依赖于更精确的带电粒子跟踪设备,这些设备由复合材料制造的结构支持。本文提出了能够解决与未来支持结构的设计和制造有关的挑战的工程技术。提供了与CMS检测器的高光度升级相关的普渡大学努力的例子,以证明新撞机的探测器建议方法的前景:未来的圆形撞机或MUON撞机。电子峰值机器上的探测器的材料预算明显较小,需要有针对性的概念。
Detector mechanics can play a significant role in a detector's performance, improvements typically require in-depth study of total mass, novel ways to reduce the total mass, as well as more integrated design concepts to save on material budgets and optimize performance. Particle detectors at future colliders rely on ever more precise charged particle tracking devices, which are supported by structures manufactured from composite materials. This article lays out engineering techniques able to solve challenges related to the design and manufacturing of future support structures. Examples of current efforts at Purdue University related to the high-luminosity upgrade of the CMS detector are provided to demonstrate the prospects of suggested approaches for detectors at new colliders: a future circular collider or a muon collider. Detectors at electron-positron machines have significantly smaller material budgets and require targeted concepts.