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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Statistical-noise reduction in correlation analysis of high-energy nuclear collisions with event-mixing
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Statistical-noise reduction in correlation analysis of high-energy nuclear collisions with event-mixing

机译:具有事件混合的高能核碰撞相关性分析中的统计噪声降低

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The error propagation and statistical-noise reduction method of Reid and Trainor for two-point correlation applications in high-energy collisions is extended to include particle-pair references constructed by mixing two particles from all event-pair combinations within event subsets of arbitrary size. The Reid-Trainor method is also applied to other particle-pair mixing algorithms commonly used in correlation analysis of particle production from high-energy nuclear collisions. The statistical-noise reduction, inherent in the Reid-Trainor event-mixing procedure, is shown to occur for these other event-mixing algorithms as well. Monte Carlo simulation results are presented which verify the predicted degree of noise reduction. In each case the final errors are determined by the bin-wise particle-pair number, rather than by the bin-wise single-particle count.
机译:Reid和Trainor在高能碰撞中两点关联应用的错误传播和统计噪声降低方法已扩展为包括粒子对参考,该粒子对参考是通过将来自所有事件对组合的两个粒子混合在任意大小的事件子集中而构造的。 Reid-Trainor方法还适用于其他粒子对混合算法,这些算法通常用于高能核碰撞产生的粒子的相关分析中。 Reid-Trainor事件混合过程中固有的统计噪声降低也显示在这些其他事件混合算法中。给出了蒙特卡罗仿真结果,这些结果验证了预测的降噪程度。在每种情况下,最终误差均由二进制粒子对数决定,而不是由二进制单粒子数决定。

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