Evaluation of Energy Resolution by Changing Angle and Position of Incident Photon in a LYSO Calorimeter

A. Saad, F. Kocak
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引用次数: 1

Abstract

In this paper, we investigate the effect on energy resolution from changing the angle and the position of incidence photon for a 5 $\times$ 5 crystal matrix built with (25 $\times$ 25 $\times$ 200) mm$^{3}$ LYSO scintillating crystals. Those crystals have been proposed for the electromagnetic calorimeter of the Turkish Accelerator Center-Particle Factory (TAC-PF) detector. The energy resolution was obtained as $\sigma_{E}/E = 0.42 \% / \sqrt{E/GeV} \oplus 1.60 \%$ at the center of the matrix in the energy range of 50 MeV to 2 GeV. When we examined the dependence of the energy resolution on the incidence angle of the photon, resolution began to deteriorate at angles greater than $2^{\circ}$ on the 5 $\times$ 5 crystal matrix. Moreover, energy resolution at the corners of the central crystal was worse than at the center of the central crystal by a factor of 1.3 at 50 MeV and 1.1 at 2 GeV.
LYSO量热计中入射光子角度和位置变化对能量分辨率的评价
本文研究了由(25 $\times$ 25 $\times$ 200) mm $^{3}$ LYSO闪烁晶体构成的5 $\times$ 5晶体矩阵,改变入射光子的角度和位置对能量分辨率的影响。这些晶体已被提议用于土耳其加速器中心粒子工厂(TAC-PF)探测器的电磁量热计。在50 MeV ~ 2 GeV的能量范围内,矩阵中心的能量分辨率为$\sigma_{E}/E = 0.42 \% / \sqrt{E/GeV} \oplus 1.60 \%$。当我们研究能量分辨率对光子入射角的依赖时,在5 $\times$ 5晶体矩阵上,当角度大于$2^{\circ}$时,分辨率开始下降。此外,在50 MeV和2 GeV下,中心晶体的能量分辨率分别是中心晶体的1.3倍和1.1倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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