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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >The Topo-trigger: a new concept of stereo trigger system for imaging atmospheric Cherenkov telescopes
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The Topo-trigger: a new concept of stereo trigger system for imaging atmospheric Cherenkov telescopes

机译:Topo触发器:用于对Cherenkov大气望远镜成像的立体声触发系统的新概念

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Imaging atmospheric Cherenkov telescopes (IACTs) such as the Major Atmospheric Gamma-ray Imaging Cherenkov (MAGIC) telescopes endeavor to reach the lowest possible energy threshold. In doing so the trigger system is a key element. Reducing the trigger threshold is hampered by the rapid increase of accidental triggers generated by ambient light (the so-called Night Sky Background NSB). In this paper we present a topological trigger, dubbed Topo-trigger, which rejects events on the basis of their relative orientation in the telescope cameras. We have simulated and tested the trigger selection algorithm in the MAGIC telescopes. The algorithm was tested using MonteCarlo simulations and shows a rejection of 85% of the accidental stereo triggers while preserving 99% of the gamma rays. A full implementation of this trigger system would achieve an increase in collection area between 10 and 20% at the energy threshold. The analysis energy threshold of the instrument is expected to decrease by ~8%. The selection algorithm was tested on real MAGIC data taken with the current trigger configuration and no γ-like events were found to be lost.
机译:诸如主要大气伽马射线成像切伦科夫(MAGIC)望远镜这样的大气切伦科夫望远镜(IACT)都在努力达到最低的能量阈值。在这种情况下,触发系统是关键要素。由环境光(所谓的夜空背景NSB)产生的意外触发的迅速增加阻碍了触发阈值的降低。在本文中,我们提出了一种拓扑触发器,称为Topo-trigger,该触发器基于事件在望远镜相机中的相对方向来拒绝事件。我们已经在MAGIC望远镜中模拟并测试了触发选择算法。该算法使用MonteCarlo仿真进行了测试,显示出85%的意外立体声触发被拒绝,同时保留了99%的伽马射线。完全实施此触发系统将在能量阈值处将收集面积增加10%到20%。仪器的分析能量阈值预计将降低8%。选择算法是对使用当前触发配置获取的实际MAGIC数据进行测试的,没有发现类似γ的事件丢失。

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