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Reduction of polarization-induced artifacts in grating-based spectrometers

机译:减少基于光栅的光谱仪中偏振引起的伪像

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摘要

An optical device that converts unpolarized light into a single polarization state is described. The device is based on a polarizing beam splitter that separates the two polarization directions. The beam splitter is combined with two pairs of equilateral prisms that are used to collimate the two beams in terms of both propagation and polarization directions. When it is used in combination with a blazed diffraction grating, this device is shown to effectively remove the polarization dependence of the first-order diffracted power. The device has an insertion loss of approximately 14percent for purely s-polarized light. However, for unpolarized light incident upon the two gratings studied here, the increased throughput of the p-polarized component leads to an average relative gain in overall efficiency of 13percent-19percent, depending on the grating. In collimating the two polarization directions, the device may cause a reduction in spectral resolution for a rectangular entrance slit. As a result, the device is more likely to find use in spectrometers that have a circular aperture, such as that provided by an optical fiber.
机译:描述了一种将非偏振光转换为单偏振态的光学装置。该设备基于将两个偏振方向分开的偏振分束器。分束器与两对等边棱镜组合在一起,这些棱镜用于在传播方向和偏振方向上使两个光束准直。当它与闪耀衍射光栅结合使用时,该器件可有效消除一阶衍射功率的偏振依赖性。对于纯s偏振光,该设备的插入损耗约为14%。但是,对于入射到此处研究的两个光栅上的非偏振光,p偏振分量的吞吐量提高导致总效率的平均相对增益为13%-19%,具体取决于光栅。在准直两个偏振方向时,该设备可能导致矩形入射狭缝的光谱分辨率降低。结果,该设备更可能在具有圆形孔径的光谱仪中找到使用,例如由光纤提供的孔径。

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