...
首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Trigger readout electronics upgrade for the ATLAS Liquid Argon Calorimeters
【24h】

Trigger readout electronics upgrade for the ATLAS Liquid Argon Calorimeters

机译:触发读取电子产品升级为atlas液体氩气量级计

获取原文
获取原文并翻译 | 示例

摘要

The upgrade of the Large Hadron Collider (LHC) scheduled for the 2019–2020 shutdown period, referred to as Phase-I upgrade, will increase the instantaneous luminosity to about three times the design value. Since the current ATLAS trigger system does not allow sufficient increase of the trigger rate, an improvement of the trigger system is required. The Liquid Argon (LAr) Calorimeter read-out will therefore be modified to deliver digital trigger signals with a higher spatial granularity in order to improve the identification efficiencies of electrons, photons, tau, jets and missing energy, at high background rejection rates at the Level-1 trigger. The new trigger signals will be arranged in 34000 so-called Super Cells which achieves 5–10 times better granularity than the trigger towers currently used and allows an improved background rejection. The readout of the trigger signals will process the signal of the Super Cells at every LHC bunch-crossing at 12-bit precision and a frequency of 40 MHz. The data will be transmitted to the Back End using a custom serializer and optical converter and 5.12 Gb/s optical links. In order to verify the full functionality of the future Liquid Argon trigger system, a demonstrator set-up has been installed on the ATLAS detector and is operated in parallel to the regular ATLAS data taking during the LHC Run-2 in 2015 and 2016. Noise level and linearity on the energy measurement have been verified to be within our requirements. In addition, we have collected data from 13 TeV proton collisions during the LHC 2015 and 2016 runs, and have observed real pulses from the detector through the demonstrator system. The talk will give an overview of the Phase-I Upgrade of the ATLAS Liquid Argon Calorimeter readout and present the custom developed hardware including their role in real-time data processing and fast data transfer. This contribution will also report on the performance of the newly developed ASICs including their radiation tolerance
机译:调度为2019-2020关闭期间的大型强子撞机(LHC)的升级,称为阶段-I升级,将使瞬时发光度提高到设计值的大约三倍。由于当前的ATLAS触发系统不允许足够增加触发速率,因此需要改进触发系统。因此,将修改液体氩(LAR)量热表读出以提供具有更高的空间粒度的数字触发信号,以提高电子,光子,TAU,喷气机和缺失能量的识别效率,在高背景抑制率级别-1触发器。新的触发信号将布置在34000所谓的超级电池中,该超级电池比目前使用的触发塔达到5-10倍,并且允许改进的背景抑制。触发信号的读出将以12比特精度和40MHz的频率处理超级电池的信号的信号。数据将使用自定义串行器和光转换器和5.12 GB / S光链路传输到后端。为了验证未来液体氩触发系统的完整功能,ATLAS检测器上安装了演示器设置,并在2015年和2016年的LHC Run-2期间并行运行到常规地图集数据。噪音能量测量的水平和线性度已被验证到我们的要求中。此外,我们在LHC 2015和2016年运行期间收集了来自13 TEV质子碰撞的数据,并通过示范系统观察了检测器的真实脉冲。谈话将概述ATLAS液体氩气热计读数的阶段升级,并呈现了自定义开发的硬件,包括它们在实时数据处理和快速数据传输中的作用。此贡献还将报告新开发的ASIC的表现,包括其辐射耐受性

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号