利用FTIR光谱响应信号分离、表征和量化硅酮或橡胶基粘合剂材料对微球透镜增强MWIR SLS光电探测器的影响

D. Megherbi, P. Mack, J. DiZoglio, M. I. Vakil, N. Limberopoulos, A. Urbas
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引用次数: 3

摘要

在我们之前的工作中,我们分析并提出了全局性能指标,并展示了MWIR微球透镜增强的单探测器如何显示出探测器灵敏度的提高和噪声与信号比(NSR)的降低。我们已经表明,在一般情况下,微球透镜降低了探测器的NSR独立于增强的探测器灵敏度的增加。我们还展示了微球透镜材料的吸收和错位如何影响和降低微球透镜增强的MWIR探测器的灵敏度。当将微球透镜放置在光电探测器上时,通常使用光学硅或橡胶粘合剂将微球透镜粘附在单个光电探测器上。在本文中,我们提出了一种新的基于模型和实验数据驱动的混合技术,用于分析和表征粘附材料对微球透镜增强SLS单光探测器灵敏度的影响。在这项工作中,这些粘附材料的特性进行了建模,并与实验微球增强单探测器FTIR光谱数据进行了比较。正如我们在这里所展示的,基于所考虑的数据,结果表明,粘接剂材料似乎会对探测器的整体灵敏度产生不利影响并降低灵敏度,在某些情况下,根据粘接剂材料的折射率,即使具有高的粘接剂材料透光率/透明度,也会降低40%以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using FTIR spectral response signals to separate, characterize and quantify the effects of silicone or rubber-based adhesive materials on microsphere lens enhanced MWIR SLS photo detectors
In our prior work we have analyzed, proposed global performance metrics, and shown how MWIR microsphere lens-enhanced single detectors have exhibited an increase in detector sensitivity and reduction in Noise to Signal Ratio (NSR). We have shown that, in general, the microsphere lens reduces the detector NSR independently of the increase in the enhanced detector sensitivity. We have also shown how microsphere lens material absorptions and misalignments can affect and reduce the microsphere lens-enhanced MWIR detector sensitivity. When placing a microsphere lens on a photo-detector, usually an optical silicone-or rubber adhesive is used to adhere and hold the microsphere lens on the single photo-detector. In this paper, we present a novel hybrid model-based and experimental data driven-based technique for analysis and characterization of the effect of the adhesive material on microsphere-lens-enhanced SLS single photo-detector sensitivity. In this work these adhesive material characteristics are modeled and compared to experimental microsphere-enhanced single detector FTIR spectral data. As we demonstrate here, based on the data considered, the results show that the adhesive material appears to adversely affect and decrease the detector overall sensitivity, and in some instances, by more than 40% depending on the adhesive material index of refraction, even with a high adhesive material transmittance/transparency.
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