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用于空间相干性测量的改进马赫-曾德尔干涉仪。

Modified Mach-Zehnder interferometer for spatial coherence measurement.

出版信息

Opt Lett. 2023 Jun 15;48(12):3127-3130. doi: 10.1364/OL.491481.

Abstract

Spatial coherence of light sources is usually obtained by using the classical Young's interferometer. Although the original experiment was improved upon in successive works, some drawbacks still remain. For example, several pairs of points must be used to obtain the complex coherence degree (normalized first-order correlation function) of the source. In this work, a modified Mach-Zehnder interferometer which includes a pair of lenses and is able to measure the spatial coherence degree is presented. With this modified Mach-Zehnder interferometer, it is possible to measure the full 4D spatial coherence function by displacing the incoming beam laterally. To test it, we have measured only a 2D projection (zero shear) of the 4D spatial coherence, which is enough to characterize some types of sources. The setup has no movable parts, making it robust and portable. To test it, the two-dimensional spatial coherence of a high-speed laser with two cavities was measured for different pulse energy values. We observe from the experimental measurements that the complex degree of coherence changes with the selected output energy. Both laser cavities seem to have similar complex coherence degrees for the maximum energy, although it is not symmetrical. Thus, this analysis will allow us to determine the best configuration of the double-cavity laser for interferometric applications. Furthermore, the proposed approach can be applied to any other light sources.

摘要

光源的空间相干性通常通过使用经典的杨氏干涉仪获得。尽管在后续的工作中对原始实验进行了改进,但仍存在一些缺点。例如,必须使用多对点来获取光源的复相干度(归一化一阶相关函数)。在这项工作中,提出了一种改进的马赫-曾德尔干涉仪,其中包括一对透镜,能够测量空间相干度。通过这种改进的马赫-曾德尔干涉仪,可以通过横向移动入射光束来测量完整的 4D 空间相干函数。为了进行测试,我们仅测量了 4D 空间相干性的二维投影(零剪切),这足以表征某些类型的光源。该设置没有可移动部件,使其坚固耐用且便携。为了进行测试,我们测量了具有两个腔的高速激光器的二维空间相干性,用于不同的脉冲能量值。我们从实验测量中观察到,相干度的复值随所选输出能量而变化。对于最大能量,两个激光腔似乎具有相似的复相干度,尽管它不是对称的。因此,这种分析将使我们能够确定双腔激光器用于干涉应用的最佳配置。此外,所提出的方法可以应用于任何其他光源。

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