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Compact spatial heterodyne interferometer using polarization gratings

机译:使用极化光栅的紧凑型空间外差关仪

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Spatial heterodyne interferometry (SHI) is a spectral measurement technique based on Fourier Transform Spectroscopy (FTS). One main benefit of an FTS lies in its higher spectral resolving power over direct measurement (dispersive) systems; however, accessing this higher resolving power can result in longer measurement times without heterodyning techniques. In this paper, the calibration and modeling of a polarization SHI is detailed, based on the Jones matrix formalism. With this, we explore non-ideal aspects of the polarization grating, such as zero-order light leakage. This light leakage causes crosstalk that can introduce errors in the spectral calibration. To minimize error, a calibration procedure is introduced based on a linear operator theory. Finally, the Jones matrix model and calibration procedure are validated through a series of experiments.
机译:空间外差干涉测量法(SHI)是一种基于傅里叶变换光谱(FTS)的光谱测量技术。 FTS的一个主要好处在于它在直接测量(色散)系统上的较高光谱分辨电源;然而,访问该更高的分辨率可能导致较长的测量时间而无需自溢技术。在本文中,基于琼斯矩阵形式主义,详细说明极化Shi的校准和建模。由此,我们探索极化光栅的非理想方面,例如零级漏光。这种漏洞导致串扰可以在光谱校准中引入错误。为了最小化误差,基于线性操作员理论介绍校准程序。最后,通过一系列实验验证Jones矩阵模型和校准程序。

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