The phase-1 upgrade of the CMS vertex detector

M. Menichelli
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Abstract

The operation of the present pixel detector has started in 2010 with LHC operating at a center of mass (CM) energy of 7 TeV. At the beginning of 2012 CM energy was increased to 8 TeV and within December 2012 a total of 19 fb-1 integrated luminosity has been delivered, with instantaneous peak luminosities approaching 7 × 1033 cm-2s-1. The present pixel detector was originally designed for a luminosity of 1 × 1034 cm-2 s-1 and a pileup (number of inelastic interactions per bunch crossing) of 25 in 25 ns bunch spacing. These beam parameters will be reached in the middle of the data taking period 2015-2018 (with an additional increase in the center of mass energy up to the value of 13 TeV) and then the peak luminosity will keep increasing until 2017 when it will reach the value of 1.5 × 1034 cm-2 s-1. The present detector will remain operative until the end of 2016 and will be replaced with an upgraded detector that will be described in this work before Long Shutdown 2 (LS2). After LS2 the beam parameters will change again, around 2021 a peak luminosity reaching at least 2 × 1034 cm-2 s-1 is foreseen, consequently pile-up will increase up to 50 with 25 ns bunch spacing. In this context the present pixel detector will be unable to perform adequately and this is the reason why a new detector needs to be built and installed before LS2. The new upgraded detector will have higher tracking efficiency and lower mass with four barrel layers and three forward/backward disks to provide a hit pixel coverage up to absolute pseudorapidities of 2.5. In this paper the new pixel detector will be described focusing mostly on the barrel detector design, construction and expected performances. Test procedures for detector module production will also be presented.
CMS顶点检测器的第一阶段升级
目前的像素探测器于2010年开始运行,当时LHC的质心(CM)能量为7 TeV。2012年初,CM能量增加到8 TeV, 2012年12月累计发射了19 lb -1的综合光度,瞬时峰值光度接近7 × 1033 CM -2s-1。目前的像素探测器最初设计的亮度为1 × 1034 cm-2 s-1,并且在25 ns束间距中堆积(每束交叉的非弹性相互作用数)为25。这些光束参数将在2015-2018年数据采集周期的中期达到(质心能量额外增加到13 TeV),然后峰值亮度将持续增加,直到2017年达到1.5 × 1034 cm-2 s-1。目前的探测器将一直工作到2016年底,并将被升级的探测器所取代,该探测器将在长停机2 (LS2)之前进行描述。在LS2之后,光束参数将再次发生变化,预计2021年左右峰值亮度至少达到2 × 1034 cm-2 s-1,因此堆积将增加到50,束间距为25 ns。在这种情况下,现有的像素探测器将无法充分发挥作用,这就是为什么需要在LS2之前建造和安装新的探测器的原因。新的升级探测器将具有更高的跟踪效率和更低的质量,具有四个桶层和三个向前/向后磁盘,提供高达2.5的绝对伪速度的命中像素覆盖率。本文主要介绍了一种新型的像素探测器,主要介绍了桶形探测器的设计、结构和预期性能。还将介绍检测模块生产的测试程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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