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A Double-Sided Silicon Micro-Strip Super-Module for the ATLAS Inner Detector upgrade in the High-Luminosity LHC

机译:用于高亮度LHC的ATLAS内部探测器升级的双面硅微带超模块

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摘要

The ATLAS experiment is a general purpose detector aiming to fully exploit the discovery potential of the Large Hadron Collider (LHC) at CERN. It is foreseen that after several years of successful data-taking, the LHC physics programme will be extended in the so-called High-Luminosity LHC, where the instantaneous luminosity will be increased up to 5 × 1034 cm−2 s−1. For ATLAS, an upgrade scenario will imply the complete replacement of its internal tracker, as the existing detector will not provide the required performance due to the cumulated radiation damage and the increase in the detector occupancy. The current baseline layout for the new ATLAS tracker is an all-silicon-based detector, with pixel sensors in the inner layers and silicon micro-strip detectors at intermediate and outer radii.The super-module is an integration concept proposed for the strip region of the future ATLAS tracker, where double-sided stereo silicon micro-strip modules are assembled into a low-mass local support structure. An electrical super-module prototype for eight double-sided strip modules has been constructed. The aim is to exercise the multi-module readout chain and to investigate the noise performance of such a system. In this paper, the main components of the current super-module prototype are described and its electrical performance is presented in detail.
机译:ATLAS实验是一种通用探测器,旨在充分利用CERN的大型强子对撞机(LHC)的发现潜力。可以预见的是,经过数年成功的数据采集,LHC物理程序将扩展到所谓的高光度LHC中,其中的瞬时光度将增加到5×1034 cm-2 s-1。对于ATLAS,升级方案将意味着完全替换其内部跟踪器,因为由于累积的辐射损坏和探测器占用率的增加,现有探测器将无法提供所需的性能。新型ATLAS跟踪器的当前基线布局是基于全硅的探测器,内层具有像素传感器,中,外半径具有硅微带探测器,超级模块是针对带状区域提出的集成概念未来ATLAS跟踪器的原理,其中将双面立体声硅微带模块组装成低质量的本地支撑结构。已构建了用于八个双面条形模块的电气超级模块原型。目的是练习多模块读出链并研究这种系统的噪声性能。本文介绍了当前超级模块原型的主要组成部分,并详细介绍了其电气性能。

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