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Modelling and tolerance analysis of volume-phase gratings in complex dispersive units

机译:复杂色散单元中体积相光栅的建模与公差分析

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In the present study we consider an approach to design and tolerance analysis of a spectrograph with a complexdispersive unit. The design uses a mosaic dispersive unit consisting of two VPH gratings imposed on the same substrate.This solution allows to detect spectra in two intervals – visible (375-625 nm) and near infrared (600-1000 nm)simultaneously. The modeling results show that the spectra resolution reaches 0.78 and 1.25 nm in the visible and NIRchannel, respectively. The diffraction efficiency varies between 74.3% and 99.7% for the entire working range.However, the design is sensitive to the manufacturing and assembly errors. Some design parameters have influence onboth the image quality and the diffraction efficiency. We developed a set of design tools allowing to include diffractionefficiency data into the tolerance analysis process. The analysis performed with these tools shown that maintenance ofthe nominal efficiency together with the image quality requires special control over the holographic layer parameters andalso tightening of the tolerances on the lenses parameters. The developed analysis approach and tools may be useful inthe future for design of spectral instruments with VPH gratings, especially when they are used to build a complexdispersive element.
机译:在本研究中,我们考虑一种设计和分析复杂光谱仪的公差的方法 分散单元。该设计使用了镶嵌色散单元,该镶嵌色散单元由施加在同一基板上的两个VPH光栅组成。 该解决方案可以检测两个间隔的光谱–可见光(375-625 nm)和近红外光(600-1000 nm) 同时。建模结果表明,可见光和近红外光谱分辨率分别达到0.78和1.25 nm 频道。在整个工作范围内,衍射效率在74.3%至99.7%之间变化。 但是,设计对制造和装配错误很敏感。一些设计参数会影响 图像质量和衍射效率。我们开发了一套设计工具,可以包括衍射 效率数据进入公差分析过程。使用这些工具进行的分析表明,维护 标称效率和图像质量要求对全息层参数进行特殊控制,并且 还收紧了镜片参数的公差。发达的分析方法和工具可能对以下方面很有用 VPH光栅的光谱仪器设计的未来,尤其是当它们用于构建复杂的仪器时 分散元素。

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