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The large-angle photon veto detector system for the NA62 experiment at CERN

机译:用于CERN NA62实验的大角度光子否决检测器系统

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The goal of the NA62 experiment is to collect about 80 K+ →π+ vv events with a S/B ratio of ~ 10 : 1. The branching ratio (BR) for this decay is ~ 10~(10) and can be predicted in the Standard Model with minimal theoretical uncertainties, making it a sensitive probe for new physics. Measurement of this BR is challenging because of the background from dominant channels. To reduce background from K+ →π+ π~0 decays (BR=21%) to an acceptable level, the π~0 must be detected with an inefficiency of less than 10~(-8). NA62 will make use of the existing NA48 beam-line and liquid-krypton calorimeter. A new photon veto system consisting of 12 rings placed along the vacuum volume is needed to detect large-angle photons (7-50mrad) with an inefficiency below 10~(-4) over the energy interval from a few hundred MeV to 35 GeV. A comprehensive R&D program was carried out in 2007-2008 to compare different detector technologies, including the re-use of lead-glass blocks from the OPAL barrel calorimeter, ultimately demonstrating the feasibility of this approach. In 2009, a complete prototype of one veto ring was constructed, complete with front-end electronics to measure energies through time-over-threshold with a dynamic range of 1000, and an in situ calibration and monitoring system. The prototype was successfully tested with electron and muon beams at the CERN SPS in fall 2009. The status of the project and present preliminary results from the recent tests will be reviewed.
机译:NA62实验的目的是收集约80 K +→π+ vv事件,S / B比为〜10:1。该衰变的分支比(BR)为〜10〜(10),可以在具有最小理论不确定性的标准模型,使其成为新物理学的敏感探针。由于主要信道的背景,该BR的测量具有挑战性。为了将背景从K +→π+π〜0衰减(BR = 21%)降低到可接受的水平,必须检测到π〜0的效率小于10〜(-8)。 NA62将利用现有的NA48束线和液k量热仪。需要一个新的光子否决系统,该系统由沿着真空体积放置的12个环组成,以检测从几百MeV到35 GeV的能量间隔内效率低于10〜(-4)的大角度光子(7-50mrad)。 2007年至2008年,我们进行了一项全面的研发计划,以比较不同的检测器技术,其中包括重复使用OPAL桶式热量计中的铅玻璃块,最终证明了这种方法的可行性。 2009年,建造了一个完整的否决环原型,并配有前端电子设备以通过动态范围为1000的阈值时间来测量能量,以及一个现场校准和监测系统。该原型机已于2009年秋季在CERN SPS上成功通过电子束和μ子束测试。该项目的状态以及近期测试的初步结果将得到审查。

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