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Tagging single muons and other long-flying relativistic charged particles by ultra-fast timing in air Cherenkov telescopes

机译:通过空中Cherenkov望远镜的超快定时标记单子和其他长期飞行的相对论带电粒子

摘要

Atmospheric air Cherenkov telescopes are successfully used for ground-based, very high-energy (VHE) gamma ray astronomy. Triggers from the so-called single muon and other long-flying relativistic charged particle events are an unwanted background for the Cherenkov telescope. Because of low rate at TeV energies the muon background is unimportant. It is much more intense for telescopes with high photon sensitivity and low energy threshold. Below a few hundred GeV energy, the so-called muon background becomes so intense, that it can deteriorate the sensitivity of telescopes (the so-called muon-wall problem). From general considerations it can be anticipated that the signature of these particles should be a light pulse with a narrow time structure. In fact, simulations show that the pulses from muons have a very narrow time profile that is well below the time resolutions of nearly all currently operating telescopes. In this report we elaborate on the time profile of Cherenkov light from the so-called single muons and show that a telescope with ultra-fast time response can open a new dimension allowing one to tag and to reject those events.
机译:切伦科夫大气望远镜已成功用于地面,超高能(VHE)伽马射线天文学。对于切伦科夫望远镜来说,所谓的单子和其他长期飞行的相对论带电粒子事件的触发是不需要的背景。由于在TeV能量下速率较低,因此介电子背景并不重要。对于具有高光子灵敏度和低能量阈值的望远镜来说,它的强度更大。低于几百个GeV能量,所谓的μon背景就会变得如此强烈,以至于会降低望远镜的灵敏度(所谓的muon-wall问题)。从一般的考虑,可以预期这些粒子的特征应该是具有窄时间结构的光脉冲。实际上,仿真表明,来自μ子的脉冲具有非常窄的时间分布,远低于几乎所有当前运行的望远镜的时间分辨率。在这份报告中,我们从所谓的单μ子阐述了切伦科夫光的时间分布,并表明具有超快速时间响应的望远镜可以打开一个新的维度,使人们可以标记和拒绝这些事件。

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