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VisIRIS-A Visible/IR Imaging Spectropolarimeter Based on a Birefringent Fiber-Optic Image Slicer

机译:基于双折射光纤图像切片器的VisIRIS-A可见/红外成像光谱仪

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High-resolution imaging spectropolarimetry in the visible and infrared wavelengths is the most effective and accurate observational diagnostic tool for many astrophysical problems, but many among them also require a spatially resolved two-dimensional field of view. However, it is difficult to achieve simultaneous three-dimensional (x, y, and λ) coverage using instruments with a conventional design. A conventional spectrograph achieves three-dimensional coverage either by scanning a tunable filter through the spectral window of interest, or by scanning a diffraction-grating-based long-slit spectrograph through the target region. Scanning in either spectral or spatial direction unavoidably degrades the quality of the data, and is time consuming. This paper describes a new visible/IR imaging spectropolarimeter design based on a novel birefringent fiber-optic image slicer and multiple-slit spectrograph. With this design, simultaneous 3-D imaging spectropolarimetry of astronomical objects with a large field of view and high spatial and spectral resolution can be achieved.
机译:可见光和红外波长的高分辨率成像光谱极化仪是解决许多天体物理学问题的最有效,最准确的观察诊断工具,但其中许多还需要空间分辨的二维视场。但是,使用具有常规设计的仪器很难同时获得三维(x,y和λ)覆盖。常规光谱仪可以通过在感兴趣的光谱窗口中扫描可调滤波器,或者在目标区域中扫描基于衍射光栅的长缝光谱仪来实现三维覆盖。在光谱或空间方向上扫描不可避免地降低了数据质量,并且很费时间。本文介绍了一种基于新型双折射光纤图像切片器和多狭缝光谱仪的新型可见/红外成像光谱仪。通过这种设计,可以实现具有大视野,高空间和光谱分辨率的天文物体的同步3D成像光谱极化法。

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