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Lamellar grating interferometer based compact FT spectrometers

机译:基于层状光栅干涉仪的紧凑型FT光谱仪

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Lamellar grating interferometers (LGI) offer compact spectrometer architecture with high spectral resolution and large clear aperture. This study investigates the diffraction based inherent limitations of LGI spectrometers in contrary to conventional Michelson type spectrometer architecture. Simulations and experiments were conducted to demonstrate and explain periodic nature of the interferogram envelope due to Talbot image formation. Simulations reveal that grating period should be chosen large enough to avoid Talbot phase reversal at the expense of mixing diffraction orders. Overall optimization effort on the LGI system reveals that it is possible to build compact spectrometers to be used directly in the field without any performance degradation in contrary to bulky FTIR systems.
机译:层状光栅干涉仪(LGI)提供紧凑的光谱仪架构,具有高光谱分辨率和大通透孔径。这项研究调查了与传统的迈克尔逊型光谱仪架构相反的LGI光谱仪基于衍射的固有局限性。进行了仿真和实验,以证明和解释由于Talbot成像而形成的干涉图包络的周期性。仿真表明,应将光栅周期选择为足够大,以避免以混合衍射级为代价避免Talbot相变。 LGI系统的整体优化工作表明,与庞大的FTIR系统相比,可以构建紧凑的光谱仪以直接在现场使用而不会导致性能下降。

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