Abstract for CSW, Ann Arbor MI, 2022

Brendan O’Connor
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Abstract

Combining hyperspectral and polarimetric imaging provides a powerful sensing modality with broad applications from astronomy to biology. Existing methods rely on temporal data acquisition or snapshot imaging of spatially separated detectors. These approaches incur fundamental artifacts that degrade imaging performance. To overcome these limitations, we present a stomatopod-inspired sensor capable of snapshot hyperspectral and polarization sensing along a single optical axis. The design relies on the unique optoelectronic properties of semiconductor polymers. By orienting the polymers in the plane of the film, the photodetectors become intrinsically polarization sensitive. The detectors can also be made semitransparent enabling multiple detectors to be stacked along the path of light. We exploit these attributes to achieve multiple spectral and polarization channels simultaneously by stacking the polarization sensitive detectors along with polymer retarders with specific chromatic dispersion. We show that this design can sense up to 15 spectral channels over a 350-nm bandwidth. A detector is also demonstrated with the ability to simultaneously register four spectral channels and three polarization channels. The talk will conclude with a discussion on how this bio-inspired design opens up a range of opportunities for high performance and tailored spectral and polarimetric imaging.
CSW摘要,密歇根州安娜堡,2022
结合高光谱和偏振成像提供了一种强大的传感方式,从天文学到生物学都有广泛的应用。现有的方法依赖于时间数据采集或空间分离探测器的快照成像。这些方法会产生降低成像性能的基本工件。为了克服这些限制,我们提出了一种受口足类启发的传感器,能够沿着单光轴进行快照高光谱和偏振传感。该设计依赖于半导体聚合物独特的光电特性。通过使聚合物在薄膜平面上定向,光电探测器具有固有的极化敏感性。探测器也可以制成半透明的,使多个探测器可以沿着光的路径堆叠。我们利用这些特性,通过将极化敏感探测器与具有特定色散的聚合物缓速剂叠加,同时实现了多个光谱和极化通道。我们证明该设计可以在350nm带宽上检测多达15个光谱通道。同时还演示了一种能够同时记录四个光谱通道和三个偏振通道的探测器。讲座的最后将讨论这种生物启发的设计如何为高性能和定制光谱和偏振成像开辟了一系列机会。
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