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Digital Indirect Detection X-ray Imagers with Microlens Focusing: Effects of Fresnel Reflections from the Microlens Layer

机译:具有微透镜聚焦的数字间接检测X射线成像仪:微透镜层的菲涅耳反射的影响

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We have been investigating whether a microlens layer placed between the phosphor and the photodetector can improve indirect detection x-ray imagers. Using a simulation study, we analyzed the light collection properties of the proposed imager taking into account Fresnel reflection and transmission properties of the lenses and the screen. A digital x-ray imager combining an 82-μm-thick Gd_2O_2S:Tb phosphor screen, a fused silica microlens layer, and a 127-μm pixel pitch photodetector (optical fill factor of 57%) were modeled. The light collection for the prototypes varied from 53% to 69% for lens thicknesses ranging from 10 to 50 μm. The full-width half-maximum (FWHM) of the light spread function ranged from 177-192 μm. 4-8% of the light was reflected back into the phosphor screen when correctly taking into account Fresnel reflections for these prototype imagers. In comparison, 56% of the light was collected and the FWHM of the light spread function was 174 μm for a conventional imager with the screen in direct contact with the photodetector. We observed that the light collection was overestimated by 6-9% but the spread functions were basically unaffected when the Fresnel assumption was not utilized in the simulations. This study shows that a properly designed microlens layer can more than offset Fresnel losses, thereby producing an improved digital x-ray imager.
机译:我们一直在研究放置在荧光粉和光电探测器之间的微透镜层是否可以改善间接探测X射线成像仪。通过仿真研究,我们在考虑菲涅耳反射以及透镜和屏幕的透射特性的情况下分析了所建议成像器的光收集特性。对数字X射线成像仪进行了建模,该成像仪结合了厚度为82μm的Gd_2O_2S:Tb荧光屏,熔融石英微透镜层和127μm像素间距的光电探测器(光学填充系数为57%)。对于原型厚度为10至50μm的透镜,光收集范围从53%到69%不等。光扩散函数的全宽半最大值(FWHM)为177-192μm。如果正确考虑这些原型成像器的菲涅耳反射,则有4-8%的光会反射回磷光屏。相比之下,对于传统的成像仪,其屏幕直接与光电探测器接触,则收集了56%的光,并且光扩散函数的FWHM为174μm。我们观察到光收集被高估了6-9%,但是当在模拟中不使用菲涅耳假设时,扩散函数基本上不受影响。这项研究表明,正确设计的微透镜层可以抵消菲涅耳损失,从而产生出改进的数字X射线成像仪。

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