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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A method to measure the integral vertical intensity and angular distribution of atmospheric muons with a stationary plastic scintillator bar detector
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A method to measure the integral vertical intensity and angular distribution of atmospheric muons with a stationary plastic scintillator bar detector

机译:一种测量与固定塑料闪烁杆探测器的整体垂直强度和大气μs角分布的方法

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We present a method to measure the integral vertical intensity and angular distribution of atmospheric muons using a stationary thick plastic scintillator bar detector with PMTs at both of its ends over exposures of a few hours in a laboratory setting. The total flux is obtained from the event rate and the angular distribution is inferred from the distribution of the recorded pulse charges, which are correlated with the track length inside the plastic scintillator. A muon generator algorithm was developed and used together with a simple simulation including the effects of the detector resolution, nonlinear saturation of the PMTs, and laboratory building coverage. As a proof of principle we made a measurement assuming a standard cos~n 8 omnienergetic angular distribution with azimuthal isotropy and different models for the energy spectrum of the source. Using measurements at 5 different azimuthal orientations, we measure an average exponent n = (1.90 ± 0.06(stat) ± 0.10(syst)), and an average vertical intensity of I_0 = (101.2 ± 1.8(stat) ± 5.5(sysl)) m~(-2) s~(-1) sr~(-1) at the location with geographic coordinates 19.33°N 99.19°W, altitude 2268 m above sea level, and geomagnetic cut-off of 8.2 GV.
机译:我们提出了一种方法来测量使用固定的厚塑料闪烁杆检测器测量大气μONs的积分垂直强度和角度分布,其两端在实验室设置中的几个小时的曝光曝光。从事件速率获得总通量,并且从记录的脉冲电荷的分布推断出角度分布,其与塑料闪烁体内的轨道长度相关。开发了一种μON发生器算法,并与探测器分辨率,非线性饱和度和实验室建筑物覆盖的效果一起使用并使用了一种简单的模拟。作为原理的证据,我们假设标准COS〜N 8 Omnienergetic角分布,具有方位角各向异性和不同模型的源极谱。使用5种不同的方位方向的测量,我们测量平均指数n =(1.90±0.06(stat)±0.10(styst)),并且I_0 =的平均垂直强度(101.2±1.8(stat)±5.5(sysl)) M〜(2)S〜(-1)SR〜(-1)在地理坐标的位置,19.33°N 99.19°W,海拔2268米高,海拔2268米,以及地磁切断8.2 GV。

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