Silicon Detector R&D for the Future Electron-Ion Collider

Xuan Li
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Abstract

The high-luminosity high-energy Electron-Ion Collider (EIC) to be built at Brookhaven National Laboratory (BNL) will provide a clean environment to study several fundamental questions in the high energy and nuclear physics fields. A high granularity and low material budget silicon vertex and tracking detector is required to provide precise measurements of primary and displaced vertex and track reconstruction with good momentum and spatial resolutions. The reference design of the EIC silicon vertex and tracking detector includes the Monolithic Active Pixel Sensor (MAPS) based vertex and tracking subsystem and the AC-Coupled Low Gain Avalanche Diode (AC-LGAD) based outer tracker, and it has the track reconstruction capability in the pseudorapidity region of -3.5 to 3.5 with full azimuthal coverage. Further detector geometry optimization with a new magnet based on the EIC project detector reference design are being performed by the newly formed ePIC collaboration. The latest ePIC vertex and tracking detector geometry and its performance evaluated in simulation will be presented. Details of the EIC silicon vertex and tracking detector R$\&$D, which include the proposed detector technologies, prototype sensor characterization and detector mechanical design will be discussed as well.
未来电子-离子对撞机用硅探测器的研发
即将在布鲁克海文国家实验室(BNL)建成的高亮度高能电子离子对撞机(EIC)将为研究高能和核物理领域的几个基本问题提供一个清洁的环境。高粒度、低材料预算的硅顶点和跟踪探测器需要提供精确的主顶点和位移顶点测量和轨迹重建,并具有良好的动量和空间分辨率。EIC硅顶点跟踪探测器的参考设计包括基于单片有源像素传感器(MAPS)的顶点跟踪子系统和基于交流耦合低增益雪崩二极管(AC-LGAD)的外部跟踪器,在-3.5 ~ 3.5伪快度范围内具有全方位覆盖的航迹重建能力。基于EIC项目探测器参考设计的新磁体进一步优化探测器的几何形状,由新成立的ePIC协作进行。将介绍最新的ePIC顶点和跟踪检测器几何结构及其仿真性能评估。详细介绍了EIC硅顶点和跟踪探测器R$\&$D,包括提出的探测器技术,原型传感器表征和探测器机械设计。
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