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Reflectivity quenching of ESR multilayer polymer film reflector in optically bonded scintillator arrays

机译:ESR多层聚合物薄膜反射镜在光学粘结闪烁体阵列中的反射猝灭

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摘要

The 3M-ESR multilayer polymer film is a widely used reflector in scintillation detector arrays. As specified in the datasheet and confirmed experimentally by measurements in air, it is highly reflective (>98%) over the entire visible spectrum (400-1000 nm) for all angles of incidence. Despite these outstanding characteristics, it was previously found that light crosstalk between pixels in a bonded LYSO scintillator array with ESR reflector can be as high as ~30-35%. This unexplained light crosstalk motivated further investigation of ESR optical performance. Analytical simulation of a multilayer structure emulating the ESR reflector showed that the film becomes highly transparent to incident light at large angles when surrounded on both sides by materials of refractive index higher than air. Monte Carlo simulations indicate that a considerable fraction (~25-35%) of scintillation photons are incident at these leaking angles in high aspect ratio LYSO scintillation crystals. The film transparency was investigated experimentally by measuring the scintillation light transmission through the ESR film sandwiched between a scintillation crystal and a photodetector with or without layers of silicone grease. Strong light leakage, up to nearly 30%, was measured through the reflector when coated on both sides with silicone, thus elucidating the major cause of light crosstalk in bonded arrays. The reflector transparency was confirmed experimentally for angles of incidence larger than ~60° using a custom designed setup allowing illumination of the bonded ESR film at selected grazing angles. The unsuspected ESR film transparency can be beneficial for detector arrays exploiting light sharing schemes, but it is highly detrimental for scintillator arrays designed for individual pixel readout.
机译:3M-ESR多层聚合物薄膜是闪烁探测器阵列中广泛使用的反射器。如数据表中所述,并通过在空气中的测量进行实验确认,对于所有入射角,它在整个可见光谱(400-1000 nm)内都具有高反射率(> 98%)。尽管具有这些突出的特性,但先前发现,在带有ESR反射器的LYSO闪烁体阵列中,像素之间的光串扰可能高达〜30-35%。这种无法解释的光串扰促使人们进一步研究ESR的光学性能。对ESR反射器进行仿真的多层结构的分析模拟表明,当薄膜的两侧都被折射率高于空气的材料包围时,该薄膜对大角度的入射光变得高度透明。蒙特卡洛模拟表明,在高纵横比的LYSO闪烁晶体中,有相当一部分(〜25-35%)的闪烁光子以这些泄漏角入射。通过测量穿过夹在闪烁晶体和带有或不带有硅脂层的光电探测器之间的ESR膜的闪烁光的透射率,通过实验研究了膜的透明度。当在硅树脂的两面都涂有硅酮时,通过反射镜测得的强光泄漏高达近30%,从而阐明了键合阵列中光串扰的主要原因。使用定制设计的装置,通过允许在选定的掠射角照射粘合的ESR膜,通过实验确定了入射角大于〜60°的反射器透明性。毫无疑问,ESR膜的透明度对于利用光共享方案的检测器阵列可能是有益的,但对于为单个像素读出而设计的闪烁器阵列却非常不利。

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