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Thermally stable imaging channeled spectropolarimetry

机译:热稳定的成像通道光谱分辨率

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Channeled spectropolarimetry can measure the complete polarization state of light as a function of wavelength. Typically, a channeled spectropolarimeter uses high order retarders made of uniaxial crystal to amplitude modulate the measured spectrum with the spectrally-dependent Stokes polarization information. A primary limitation of conventional channeled spectropolarimeters is related to the thermal variability of the retarders. Thermal variation often forces frequent system recalibration, particularly for field deployed systems. However, implementing thermally stable retarders results in an athermal channeled spectropolarimeter that relieves the need for frequent recalibration. Past work has addressed this issue by developing athermalized retarders using two or more uniaxial crystals. Recently, a retarder made of biaxial KTP and cut at a thermally insensitive angle was used to produce an athermal channeled spectropolarimeter. This paper presents the results of the biaxial crystal system and compares the two thermal stabilization techniques in the context of producing an imaging thermally stable channeled spectropolarimeter. A preliminary design for a snapshot imaging channeled spectropolarimeter is also presented.
机译:引导的光波罗米米法可以测量光的完全偏振状态作为波长的函数。通常,通道的透视分光极镜使用由单轴晶体制成的高级延迟器,以通过光谱依赖的斯托克斯偏振信息调节测量的光谱。传统通道的谱米计的主要限制与延迟器的热变异有关。热变化通常强制频繁的系统重新校准,特别是对于现场部署的系统。然而,在热稳定的延迟器中实现导致滴度通道的分光极管,以减轻对频繁重新校准的需要。过去的工作通过制定使用两种或更多个单轴晶体的滴热延迟器来解决了这个问题。最近,使用由双轴KTP制成的延迟器并以热不敏感角度切割用于制备接种器通道的分光极管。本文介绍了双轴晶体系统的结果,并比较了在生产成像热稳定通道的分光极分谱仪的背景下的两个热稳定技术。还提出了一种快照成像的初步设计。

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