Upgrade of the ALICE Time Projection Chamber for the LHC Run3

Á. Gera
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Abstract

ALICE, one of the experiments at the Large Hadron Collider (CERN), is undergoing ambitious upgrades during the ongoing second long shutdown (LS2). The main goal of this project is to access rare events and previously inaccessible physics observables. The increased Pb-Pb and pp collision rates need a correspondingly higher TPC operation rate in the next Run 3 of the LHC. The operational gated MWPC readout used so far cannot be used at such fast rates. Therefore a new readout chamber is needed with a novel technology and without any compromise on the momentum and energy resolution. As a solution the Gas Electron Multiplier (GEM) technology is applied. This new readout chamber consists of inner-(IROC) and outer (OROC) readout chambers with a 4 stage GEM cascade in order to reduce back-drifting ion space charges. These quadruple stacks have proven to provide sufficient ion blocking capabilities. This structure also preserves the intrinsic energy resolution and keeps the space-charge distortions at a tolerable level. The GEMs cannot be repaired during operation, therefore to minimize the unsuitable foils, the Quality Assurance system is developed. These cleanroom measurements investigate the hole size uniformity, the gain uniformity and the electrical stability. Due to the continuous readout, higher readout rate is possible. The new ASIC-SAMPA has been developed for this purpose. After the ROC assembly some of chambers were tested in the ALICE cavern, and a test campaign started for the further testing of the ROC bodies at GIF at CERN.
大型强子对撞机运行ALICE时间投影室的升级
ALICE是大型强子对撞机(CERN)的实验之一,在正在进行的第二次长期关闭(LS2)期间正在进行雄心勃勃的升级。该项目的主要目标是访问罕见事件和以前无法访问的物理观测。随着Pb-Pb和pp碰撞率的增加,在LHC的下一个3次运行中需要相应提高TPC开工率。到目前为止使用的操作门控MWPC读出器不能以如此快的速率使用。因此,需要一个新的读出室,采用一种新颖的技术,在动量和能量分辨率上没有任何妥协。作为解决方案,采用了气体电子倍增器(GEM)技术。这个新的读出室由内(IROC)和外(OROC)读出室组成,带有4级GEM级联,以减少反向漂移的离子空间电荷。这些四层堆叠已被证明具有足够的离子阻断能力。这种结构还保留了固有的能量分辨率,并将空间电荷畸变保持在可容忍的水平。GEMs在运行过程中无法修复,因此为了最大限度地减少不合适的箔,开发了质量保证系统。这些洁净室测量研究了孔尺寸均匀性、增益均匀性和电稳定性。由于连续读出,更高的读出率是可能的。为此目的开发了新的ASIC-SAMPA。在ROC组装之后,一些腔室在ALICE洞穴中进行了测试,并且在欧洲核子研究中心的GIF开始了进一步测试ROC体的测试活动。
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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