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A method of fabricating wide spectrum flat-field concave grating with compensation concave lens

机译:用补偿凹透镜制造宽光谱平场凹光栅的方法

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Flat-field concave diffraction grating is the key component of a portable grating spectrometer, which integrates three optical properties: dispersion, imaging, and flat spectral image in a single device. In recent years, fabricating concave grating has attracted much attention. However, the distance between two exposure light sources in the fabrication light system are often short, which makes it difficult to build the fabrication structure, sometimes even impossible. In order to solve this problem, two methods have been adopted. One is using special microscope objectives, but it reduces the system's ability of eliminating of aberrations. The other way is building spatial filters respectively, but this adds the difficulty of the system installing and adjustment, furthermore, it makes it impossible to fabricate wide spectrum FCDG. In this paper, a method to increase the distance between the two exposure light sources is proposed by using a compensation mirror. The use of compensation mirror can not only reduce the difficulty of fabricating grating, but also achieve results almost as better as that of the two original exposure points. We calculated the two new exposure points position with Matlab, and then performed system modeling, simulation and optimization in the Zemax software. A theoretical analysis is given to show that the proposed method can ensure the spectral image quality and greatly reduce the fabrication difficulty.
机译:平场凹面衍射光栅是便携式光栅光谱仪的关键组件,该光谱仪在单个设备中集成了三个光学特性:色散,成像和平面光谱图像。近年来,制造凹面光栅已经引起了广泛的关注。然而,制造光系统中的两个曝光光源之间的距离通常很短,这使得难以构造制造结构,有时甚至是不可能的。为了解决这个问题,采用了两种方法。一种是使用特殊的显微镜物镜,但它会降低系统消除像差的能力。另一种方法是分别构建空间滤波器,但这增加了系统安装和调整的难度,此外,它使得无法制造广谱FCDG。在本文中,提出了一种使用补偿镜来增加两个曝光光源之间距离的方法。补偿镜的使用不仅可以减少制造光栅的难度,而且可以获得与两个原始曝光点几乎相同的效果。我们使用Matlab计算了两个新的曝光点位置,然后在Zemax软件中进行了系统建模,仿真和优化。理论分析表明,该方法可以保证光谱图像质量,大大降低了制造难度。

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