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Snapshot imaging spectropolarimeter utilizing polarization gratings

机译:利用偏振光栅的快照成像分光计

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Measurements of complete polarization and spectral content across a broad wavelength range of a scene are used in various fields including astronomy, remote sensing, and target detection. Most current methods to acquire spectral and polarimetric information need moving parts or modulation processes which lead to significant complexity or reduce sampling resolution. Here we present a novel snapshot imaging spectropolarimeter based on anisotropic diffraction gratings known as polarization gratings (PGs). Using multiple PGs and waveplates, we can acquire both spectrally dispersed and highly polarized diffractions of a scene on a single focal plane array, simultaneously. PGs uniquely produce only three diffracted orders (0 and ±1), polarization independent zeroth-order, polarization sensitive first-orders that depend linearly with the Stokes parameters, and easily fabricated as polymer films suitable for visible to infrared wavelength operation. The most significant advantage of our spectropolarimeter over other snapshot imaging systems is its capability to provide simultaneous acquisition of both spectral and polarization information at a higher resolution and in a simpler and more compact way. Here we report our preliminary data and discuss the cogent design of our imaging spectropolarimeter.
机译:在场景的较宽波长范围内对完整偏振和光谱内容的测量已用于包括天文学,遥感和目标检测在内的各个领域。当前用于获取光谱和极化信息的大多数方法都需要移动部件或调制过程,这会导致相当大的复杂性或降低采样分辨率。在这里,我们介绍一种基于各向异性衍射光栅(称为偏振光栅(PGs))的新型快照成像光谱仪。使用多个PG和波片,我们可以同时在单个焦平面阵列上获取场景的光谱分散和高偏振衍射。 PG独特地仅产生三个衍射级(0和±1),与偏振无关的零级,对偏振敏感的第一级,它们与Stokes参数线性相关,并且容易制造为适用于红外波长可见光的聚合物薄膜。我们的光谱旋光仪相对于其他快照成像系统的最显着优势是能够以更高的分辨率,更简单,更紧凑的方式同时采集光谱和偏振信息。在这里,我们报告我们的初步数据,并讨论我们的成像光谱仪的合理设计。

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