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An improved method for measuring muon energy using the truncated mean of dE/dx

机译:一种使用d E / dx的截短平均值测量μ子能的改进方法

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摘要

The measurement of muon energy is critical for many analyses in large Cherenkov detectors, particularly those that involve separating extraterrestrial neutrinos from the atmospheric neutrino background. Muon energy has traditionally been determined by measuring the specific energy loss (dE/dx) along the muon's path and relating the dE/dx to the muon energy. Because high-energy muons (Eμ>1TeV) lose energy randomly, the spread in dE /dx values is quite large, leading to a typical energy resolution of 0.29 in log10(Eμ)log10(Eμ) for a muon observed over a 1 km path length in the IceCube detector. In this paper, we present an improved method that uses a truncated mean and other techniques to determine the muon energy. The muon track is divided into separate segments with individual dE/dx values. The elimination of segments with the highest dE/dx results in an overall dE/dx that is more closely correlated to the muon energy. This method results in an energy resolution of 0.22 in log10(Eμ)log10(Eμ), which gives a 26% improvement. This technique is applicable to any large water or ice detector and potentially to large scintillator or liquid argon detectors.
机译:对μ能量的测量对于大型Cherenkov探测器的许多分析至关重要,尤其是那些涉及将地外中微子与大气中微子背景分离的分析。传统上,通过测量沿介子路径的比能量损失(dE / dx)并将dE / dx与介子能量相关来确定介子能。由于高能μ子(Eμ> 1TeV)随机失去能量,因此dE / dx值的分布相当大,导致在1 km处观察到的μ子在log10(Eμ)log10(Eμ)中的典型能量分辨率为0.29 IceCube检测器中的路径长度。在本文中,我们提出了一种改进的方法,该方法使用截短平均值和其他技术来确定介子能量。介子轨道被分为具有单独dE / dx值的单独段。消除具有最高dE / dx的链段会导致总dE / dx与μ子能量更紧密相关。此方法的能量分辨率为log10(Eμ)log10(Eμ),为0.22,提高了26%。此技术适用于任何大型水或冰探测器,并且可能适用于大型闪烁器或液氩探测器。

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