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Macroscopic versus microscopic description of polarization properties of optically anisotropic vertical-cavity surface-emitting lasers

机译:光学各向异性垂直腔面发射激光器的偏振特性的宏观与微观描述

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摘要

A macroscopic model for optically anisotropic vertical-cavity surface-emitting lasers (VCSELs) is derived from a microscopic model [Burak et al., Phys. Rev. A, vol. 61, pp. 53809-53830, 2000]. This provides a rigorous generalization of the phenomenological approaches to the description of polarization properties of VCSELs used commonly in the literature. The optical anisotropy of the VCSEL structure is assumed to result from anisotropic strain of the active quantum-well material. The polarization-dependent linewidth enhancement factors and gain coefficients are calculated microscopically from the anisotropy of the valence bands. The influence of the anisotropic strain on the stability of polarization eigenmodes is investigated. A comparative study is performed between the full microscopic model and the macroscopic model on different levels of approximations. The results of the models agree very well for input/output characteristics of anisotropic VCSEL's. Also, the stability properties of polarization eigenmodes are qualitatively the same, although the ranges of stability are quantitatively different for both approaches. Incorporation of many-body effects into the analysis diminishes the agreement between microscopic and macroscopic theories.
机译:光学各向异性垂直腔表面发射激光器(VCSEL)的宏观模型是从微观模型中得出的[Burak等,Phys。 A版,第一卷61,pp.53809-53830,2000]。这为描述文献中常用的VCSEL偏振特性的现象学方法提供了严格的概括。 VCSEL结构的光学各向异性被认为是由活性量子阱材料的各向异性应变引起的。极化相关的线宽增强因子和增益系数是根据价带的各向异性进行微观计算的。研究了各向异性应变对极化本征模稳定性的影响。在完整的微观模型和宏观模型之间,在不同的近似水平上进行了比较研究。模型的结果对于各向异性VCSEL的输入/输出特性非常吻合。同样,尽管两种方法的稳定性范围在数量上不同,但偏振本征模的稳定性在定性上是相同的。将多体效应纳入分析会削弱微观理论和宏观理论之间的一致性。

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