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First-level muon track trigger for future hadron collider experiments

机译:未来Hadron Collifer实验的第一级μ子轨道触发器

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摘要

Single muon triggers are crucial for the physics programmes as hadron collider experiments. To be sensitive to electroweak processes, single muon triggers with transverse momentum thresholds down to 20 GeV and dimuon triggers with even lower thresholds are required. In order to keep the rates of these triggers at an acceptable level these triggers have to be highly selective, i.e. they must have small accidental trigger rates and sharp trigger turn-on curves. The muon systems of the LHC experiments and experiments at future colliders like FCC-hh will use two muon chamber systems for the muon trigger, fast trigger chambers like RPCs with coarse spatial resolution and much slower precision chambers like drift-tube chambers with high spatial resolution. The data of the trigger chambers are used to identify the bunch crossing in which the muon was created and for a rough momentum measurement while the precise measurements of the muon trajectory by the precision chambers are ideal for an accurate muon momentum measurement. A concept for the muon trigger of the baseline detector for the FCC-hh which exploits the precision measurements of drift-tube chambers is presented including the description and the test of a compact muon track reconstruction algorithm.
机译:单一的μ子触发器对于哈龙碰撞器实验的物理计划至关重要。为了对Electroweak工艺敏感,需要具有横向动量阈值的单μ子触发器,甚至甚至更低的阈值,需要横向动量阈值。为了使这些触发器的速率保持在可接受的水平,这些触发器必须具有高度选择性,即它们必须具有小的意外触发速率和尖锐的触发开启曲线。 LHC实验的MUON系统和FCC-HH这样的未来侵占者的实验将使用两个MUON触发器的μ子室系统,如RPC的快速触发室,具有粗糙的空间分辨率,以及具有高空间分辨率的漂移管室等较慢的精密腔室。触发室的数据用于识别其中创建μ的束交叉,而精密腔室的MuON轨迹的精确测量是精确的μON动量测量的理想选择。介绍了利用漂移管室的精确测量的FCC-HH的基线检测器的概念,包括描述和测试Compact Muon轨道重建算法。

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