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Spatial coherence measurements in arrays of coupled vertical cavity surface emitting lasers

机译:耦合垂直腔表面发射激光器阵列中的空间相干测量

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The spatial coherence and the optical phase distribution across a two-dimensional (2D) photonic crystal implemented with coupled arrays of vertical cavity surface emitting lasers (VCSELs) are experimentally characterized. This is achieved by performing Young's interference experiments between pairs of array elements using a spatial light modulator arrangement. In contrast to far-field measurements that provide information only on the global spatial coherence, this approach can yield full mapping of the complex degree of spatial coherence. Examples of such analysis are presented for nominally uniform one-dimensional and 2D arrays of coupled VCSELs and possible mechanisms of the observed coherence degradation are discussed.
机译:实验上表征了通过垂直腔表面发射激光器(VCSEL)的耦合阵列实现的二维(2D)光子晶体的空间相干性和光学相位分布。这是通过使用空间光调制器装置在成对的阵列元件之间进行杨氏干涉实验来实现的。与仅提供有关全局空间相干性的信息的远场测量相反,此方法可以产生复杂度的空间相干性的完整映射。给出了这样的分析示例,用于耦合VCSEL的名义上均匀的一维和2D阵列,并讨论了观察到的相干性降低的可能机制。

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