Smart slit assembly for high-resolution spectrometers in space

SPIE OPTO Pub Date : 2016-03-16 DOI:10.1117/12.2209336
B. Guldimann, K. Minoglou
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引用次数: 7

Abstract

This paper introduces a novel imaging spectrometer subsystem concept, the Smart Slit Assembly (SSA), that improves instrument performances and enables new features for future Earth Observation. Derived from CarbonSat (ESA study) requirements, a concept of an SSA based on MEMS micro-shutters/mirrors and associated instrument design aspects are presented. The SSA replaces the classical grating spectrometer slit aperture in the focal plane of the telescope with three core elements, namely an input multimode waveguide array followed by a spatial light modulator (SLM) and an output multimode waveguide array which ends at the slit aperture viewed by the spectrometer. The SLM’s in-and-outputs being coupled to waveguide arrays leads to an enhanced SLM with light de-coherence, polarization scrambling and scene/object homogenization capabilities. The additional advantage of this subsystem’s arrangement is that waveguide level homogeneous spatial light modulation can be achieved with spatially in-homogeneous coupling from in to output multimode waveguides, allowing new, simpler and less costly designs for the SLM part of the SSA. The SSA is particularly useful for instance to reduce stray light by scene/object selection or modulation (e.g. de-clouding, intensity equalization), relax on the required dynamic range of the detectors, increase spectral stability by waveguide level intensity homogenization/scrambling, continuous in-flight monitoring of the co-registration between two or several spectrometer channels and inflight monitoring of stray light.
用于空间高分辨率光谱仪的智能狭缝组件
本文介绍了一种新的成像光谱仪子系统概念——智能狭缝组件(Smart Slit Assembly, SSA),它提高了仪器的性能,并为未来的地球观测提供了新的功能。根据欧洲航天局(ESA)的研究要求,提出了基于MEMS微快门/反射镜的SSA概念和相关仪器设计方面的问题。SSA用三个核心元件取代了望远镜焦平面上的经典光栅光谱仪狭缝孔径,即以空间光调制器(SLM)为中心的输入多模波导阵列和以光谱仪观察到的狭缝孔径为终点的输出多模波导阵列。SLM的输入和输出与波导阵列耦合,从而增强了SLM的光去相干性、偏振置乱和场景/物体均匀化能力。该子系统的另一个优点是,波导级均匀空间光调制可以通过从输入到输出多模波导的空间非均匀耦合来实现,从而允许对SSA的SLM部分进行新的,更简单且成本更低的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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