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Combined narrowband imager-spectrograph with volume-phase holographic gratings

机译:体积相全息光栅与窄带成像仪的组合

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In the present work we discuss a possibility to build an instrument with two operation modes - spectral and imaging ones. The key element of such instrument is a dispersive and filtering unit consisting of two narrowband volume-phase holographic gratings. Each of them provides high diffraction efficiency in a relatively narrow spectral range of a few tens of nanometers. Besides, the position of this working band is highly dependent on the angle of incidence. So we propose to use a couple of such gratings to implement the two operational modes. The gratings are mounted in a collimated beam one after another. In the spectroscopic mode the gratings are turned on such angle that the diffraction efficiency curves coincide, thus the beams diffracted on the first grating are diffracted twice on the second one and a high-dispersion spectrum in a narrow range is formed. If the collimating and camera lenses are corrected for a wide field it is possible to use a long slit and register the spectra from its different points separately. In the imaging mode the gratings are turned to such angle that the efficiency curves intersect in a very narrow wavelength range. So the beams diffracted on the first grating are filtered out by the second one except of the spectral component, which forms the image. In this case the instrument works without slit diaphragm on the entrance. We provide an example design to illustrate the proposed concept. This optical scheme works in the region around 656 nm with F/# of 6.3. In the spectroscopic mode it provides a spectrum for the region from 641 to 671 nm with reciprocal linear dispersion of 1.4 nm/mm and the spectral resolving power higher than 14000. In the imaging mode it covers linear 12mm~X12mm field of view with spatial resolution of 15-30 lines/mm.
机译:在目前的工作中,我们讨论了构建具有两种操作模式的仪器的可能性-光谱模式和成像模式。这种仪器的关键元件是由两个窄带体相全息光栅组成的色散和滤波单元。它们中的每一个都在几十纳米的相对窄的光谱范围内提供高衍射效率。此外,该工作带的位置高度取决于入射角。因此,我们建议使用几个这样的光栅来实现两种工作模式。光栅一个接一个地安装在准直光束中。在分光模式下,将光栅以一定角度旋转,以使衍射效率曲线重合,从而使在第一光栅上衍射的光束在第二光栅上衍射两次,从而形成了窄范围内的高色散光谱。如果将准直镜和相机镜头校正为大视场,则可以使用长缝隙并分别记录其不同点的光谱。在成像模式下,将光栅旋转到一定角度,以使效率曲线在非常窄的波长范围内相交。因此,衍射在第一光栅上的光束被第二光栅滤除,而光谱分量除外,从而形成了图像。在这种情况下,仪器可以在入口处没有隔膜的情况下工作。我们提供一个示例设计来说明所提出的概念。此光学方案在656 nm左右的区域中起作用,F /#为6.3。在光谱模式下,它提供了从641到671 nm区域的光谱,线性色散为1.4 nm / mm,光谱分辨力高于14000。在成像模式下,它覆盖了12mm〜X12mm线性视场,具有空间分辨率15-30线/毫米。

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