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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Development of a highly selective muon trigger exploiting the high spatial resolution of monitored drift-tube chambers for the ATLAS experiment at the HL-LHC
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Development of a highly selective muon trigger exploiting the high spatial resolution of monitored drift-tube chambers for the ATLAS experiment at the HL-LHC

机译:开发高度选择性的μ子触发,利用HL-LHC的地图集实验的监测漂移管室的高空间分辨率

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The High-Luminosity LHC will provide the unique opportunity to explore the nature of physics beyond the Standard Model. Highly selective first level triggers are essential for the physics programme of the ATLAS experiment at the HL-LHC, where the instantaneous luminosity will exceed the LHC design luminosity by almost an order of magnitude. The ATLAS first level muon trigger rate is dominated by low momentum muons, selected due to the moderate momentum resolution of the current system. This first level trigger limitation can be overcome by including data from the precision muon drift tube (MDT) chambers. This requires the fast continuous transfer of the MDT hits to the o -detector trigger logic and a fast track reconstruction algorithm performed in the trigger logic. The feasibility of this approach was studied with LHC collision data and simulated data. Two main options for the hardware implementation will be studied with demonstrators: an FPGA based option with an embedded ARM microprocessor and an associate memory chip base option. In this note the basic MDT trigger concept and the design of a demonstrator for the two hardware options are presented.
机译:高光泽度LHC将提供探索标准模型超出物理性质的独特机会。高度选择性的第一级触发器对于HL-LHC的地图集实验的物理程序至关重要,其中瞬时亮度将超过LHC设计亮度几乎是一个数量级。 ATLAS第一级MUON触发率由低动量μ计主导,由于当前系统的温和动量分辨率选择。通过包括来自精密μ子漂移管(MDT)腔室的数据,可以克服该第一级触发限制。这需要MDT命中的快速连续传输到O -Detector触发逻辑和在触发逻辑中执行的快速轨道重建算法。使用LHC碰撞数据和模拟数据研究了这种方法的可行性。将使用示威者研究硬件实现的两个主要选项:具有嵌入式臂微处理器的FPGA选项和相关的内存芯片基础选项。在此说明中,提出了基本MDT触发概念和两个硬件选项的演示器的设计。

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