论文标题

向前电子离子对撞机的前硅跟踪检测器开发

Forward silicon tracking detector developments for the future Electron-Ion Collider

论文作者

Li, Xuan, Brooks, Melynda, Durham, Matt, Liu, Ming, Morales, Yasser Corrales, Nagai, Kei, Navazo, Anton, Prokop, Christopher, Renner, Eric, Sondheim, Walter, da Silva, Cesar

论文摘要

未来的电子离子对撞机(EIC)将利用一系列高发光高能电子+质子($ e+p $)和电子+核($ e+a $)碰撞来探索核子和核的内部结构以及物质形成过程。 EIC的重型强体和喷气测量值将在确定核子/核分布分布功能和重夸克强调过程中起着至关重要的作用。高粒度和低材料预算向前的硅跟踪器将在EIC上进行精确的远期重型风味测量,这些测量具有增强的敏感性,可以访问这些运动学极端。正向硅跟踪器(FST)检测器正在设计,EIC的R $ \&$ d。两种先进的硅技术,即耗尽的单片活性像素传感器(DMAP)和AC耦合的低增益雪崩二极管(AC-LGAD),它们可以提供良好的空间和时机分辨率,被认为是EICICON跟踪检测器的候选者。将介绍有关FST概念设计和持续DMAP和LGAD检测器R $ \&$ d的进展和结果。还将讨论通往综合EIC检测器的途径。

The future Electron-Ion Collider (EIC) will utilize a series of high-luminosity high-energy electron+proton ($e+p$) and electron+nucleus ($e+A$) collisions to explore the inner structure of nucleon and nucleus and the matter formation process. Heavy flavor hadron and jet measurements at the EIC will play an essential role in determining the nucleon/nucleus parton distribution function and heavy quark hadronization process in not well constrained kinematic regions. A high granularity and low material budget forward silicon tracker will enable precise forward heavy flavor measurements at the EIC, which have enhanced sensitivities to access these kinematic extremes. A Forward Silicon Tracker (FST) detector is under design and R$\&$D for the EIC. Two advanced silicon technologies, the Depleted Monolithic Active Pixel Sensor (DMAPS) and the AC coupled Low Gain Avalanche Diode (AC-LGAD), which can provide fine spatial and timing resolutions, have been considered as candidates for the EIC silicon tracking detector. Progresses and results about the FST conceptual design and ongoing DMAPS and LGAD detector R$\&$D will be presented. The path towards an integrated EIC detector will be discussed as well.

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