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Comparison of the coherence properties of superradiance and laser emission in semiconductor structures

机译:半导体结构中超辐射与激光发射的相干特性比较

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The coherence properties of a transient electron-hole state developing during superradiance emission in semiconductor laser structures have been studied experimentally using a Michelson interferometer and Young's classic double-slit configuration. The results demonstrate that, in the lasers studied, the first-order correlation function, which quantifies spatial coherence, approaches unity for superradiant emission and is 0.2-0.5 for laser emission. The supercoherence is due to long-range ordering upon the superradiant phase transition.
机译:已经使用迈克尔逊干涉仪和杨氏经典双缝结构对半导体激光器结构中超辐射发射过程中产生的瞬态电子-空穴态的相干特性进行了实验研究。结果表明,在所研究的激光器中,用于量化空间相干性的一阶相关函数对于超辐射发射趋于统一,对于激光发射而言为0.2-0.5。超相干是由于在超辐射相变时的远距离排序而引起的。

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