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[宽带高分辨率先进 Czerny-Turner 成像光谱仪的研究]

[Study on the Advanced Czerny-Turner Imaging Spectrometer with High Resolution in Broadband].

作者信息

Yan Ling-wei

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Jun;35(6):1756-60.

Abstract

This paper studies the Czerny-Turner optical structure which is used for the application in imaging spectrometers. To obtain the perfect astigmatism-corrected condition, the Czerny-Turner system has been analyzed and advanced. The basic structure of optical system is still as the traditional form which is composed by the spherical collimating mirror, the plane grating and the spherical focusing mirror. However, an off-the-shelf cylindrical lens is added after the focusing mirror to remove astigmatism differences between the tangential direction and the sagittaI direction. It makes the advanced optical system presents high resolution over the full bandwidth and decreases the cost. An example of the imaging spectrum system in the waveband of 380-760 nm has been designed to prove our theory. A system owns that NA equals to 0.05, and the modulation transfer functions (MTF) of all fields of view are more than 0.59 over the broadband under the required Nyquist frequency (20 lp x mm(-1)). It certificates that the optical system theory can be applied to the small scale imaging spectrometer with high resolution in spectral broadband.

摘要

本文研究了用于成像光谱仪的切尔尼-特纳光学结构。为获得完美的像散校正条件,对切尔尼-特纳系统进行了分析和改进。光学系统的基本结构仍保持传统形式,由球面准直镜、平面光栅和球面聚焦镜组成。然而,在聚焦镜后添加了一个现成的柱面透镜,以消除切向和弧矢方向之间的像散差异。这使得改进后的光学系统在全带宽上具有高分辨率,并降低了成本。设计了一个380 - 760 nm波段成像光谱系统的实例来证明我们的理论。一个系统的数值孔径(NA)等于0.05,在所需奈奎斯特频率(20 lp x mm(-1))下,所有视场的调制传递函数(MTF)在宽带范围内均大于0.59。这证明了该光学系统理论可应用于光谱宽带内具有高分辨率的小型成像光谱仪。

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