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Design, fabrication and evaluation of anti-reflection films coated on LYSO scintillators

机译:涂在LYSO闪烁体上的减反射膜的设计,制造和评估

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Surface treatment method affects optical properties of scintillator which is a critical component of PET detector module. We designed and fabricated the high transmittance antireflection (AR) films for Lutetium-yttrium oxy-orthosilicate (LYSO) crystals with different combinations of the exact composition, thickness, and number of layers. It is feasible to adjust the reflectivity of the coating to produce crystal arrays with desired optical properties.The simulation results indicated that coating films constructed with MgF2, TiO2, HfO2 significantly increase the transmittance of coupling surfaces. Based on the method of multilayer dielectric film stacking, we optimized an AR film with 11 layers, which matches the emission spectrum of LYSO scintillator. According to the design and simulation results, the samples show desirable optical performance. We have investigated the feasibility of applying AR coatings directly to the crystal strip to increasing its light output across the entire emission spectrum (360 nm to 620 nm).We concluded that AR coatings designed in this study can be applied to scintillators to improve the performance of PET detector, which is mostly characterized by increasement of light yield of LYSO crystal and improvements of energy and timing performance.
机译:表面处理方法会影响闪烁体的光学性能,而闪烁体是PET检测器模块的关键组件。我们设计和制造了具有正确组成,厚度和层数的不同组合的L-氧合正硅酸钇(LYSO)晶体的高透射率减反射(AR)膜。调整涂层的反射率以产生具有所需光学性能的晶体阵列是可行的。仿真结果表明,用MgF构成的涂膜 2 钛白粉 2 ,HfO 2 大大提高了耦合面的透射率。基于多层电介质膜的堆叠方法,我们优化了具有11个层的AR膜,该膜与LYSO闪烁体的发射光谱相匹配。根据设计和仿真结果,样品显示出理想的光学性能。我们已经研究了将AR涂层直接应用于晶体条以增加其在整个发射光谱(360 nm至620 nm)中的光输出的可行性。我们得出结论,本研究设计的AR涂层可以应用于闪烁体以提高性能PET检测器的特点是,其主要特点是增加了LYSO晶体的光产率,并改善了能量和计时性能。

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