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Energy calibration of thin plastic scintillators using Compton scattered y-rays

机译:使用康普顿散射y射线校准薄塑料闪烁体的能量

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A practical method of using the Compton scattered photons for the energy calibration of thin plastic scintillators is described. The location of the Compton edge in the measured energy spectrum was obtained by matching this spectrum with the Monte Carlo simulated spectrum near the Compton maxima. The simulated spectrum was broadened by a Gaussian-type function. The y-ray energy spectrum calculation was carried out by employing the MCNP4C simulation code. The natural degradation of the light yield within the scintillator was experimentally investigated and the observed non-uniform yield across the scintillator was taken into account in the simulation. A x~2 fit between the measured and the simulated y-ray spectra provided the Compton edge positions for y energies of 511, 662,1173 and 1275 keV. The calibration approach can be simply applied to any thin organic scintillator with an arbitrary shape.
机译:描述了一种使用康普顿散射光子进行薄塑料闪烁体能量校准的实用方法。通过将该光谱与康普顿最大值附近的蒙特卡罗模拟光谱进行匹配,可以获得康普顿边缘在测量的能谱中的位置。通过高斯型函数扩展了模拟光谱。 y射线能谱的计算是通过使用MCNP4C模拟代码进行的。通过实验研究了闪烁器内光输出的自然衰减,并且在模拟中考虑了整个闪烁器上观测到的不均匀输出。测量的和模拟的y射线光谱之间的x〜2拟合为y能量511、662、1173和1275 keV提供了Compton边缘位置。校准方法可以简单地应用于具有任意形状的任何薄有机闪烁体。

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