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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Coupled mode theory: a powerful tool for analyzing complex VCSELs and designing advanced device features
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Coupled mode theory: a powerful tool for analyzing complex VCSELs and designing advanced device features

机译:耦合模式理论:一种用于分析复杂VCSEL和设计高级器件功能的强大工具

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摘要

Vertical-cavity surface-emitting lasers (VCSELs) have become leading light sources in plenty of applications due to their good characteristics and low costs. There are, however, some features that need improvements; therefore, optimized or new designs ideas are necessary. To this aim, an electromagnetic simulation tool, which is fast and precise at the same time, is desirable; to cover all the possible requirements, it should be fully three-dimensional (3-D) and vectorial. A model with such features was first proposed by Bava et al. ("Three-Dimensional Model for Vectorial Fields in Vertical-Cavity Surface-Emitting Lasers", Phys. Rev. A, vol. 63, p. 23816, 2001), based on coupled-mode theory. Here, a review of its applications will be given, related to particular devices: nonperfectly circular VCSELs and phase-coupled arrays. The comparison with the corresponding experimental results turns out to be very satisfactory. Therefore, we were encouraged to use the model for obtaining design criteria of polarization maintaining VCSELs by using a small relief grating. The capability of gratings to pin the VCSEL polarization was already demonstrated; however, the different configurations do not allow one to have a clear overview of this technique. Moreover, to the best of our knowledge, a full simulation of a VCSEL with a grating was never presented, due to the complexity of treating the corresponding fully 3-D and vectorial problem. For the first time, we have the possibility of comparing different configurations on the same footing; in particular, we will evaluate the performances of dielectric and metal gratings. With the design we propose here, single-transverse and single-polarization-mode operation are predicted with a suppression of the other polarization easily in the order of 45 dB.
机译:垂直腔面发射激光器(VCSEL)由于其良好的特性和低成本而成为许多应用中的领先光源。但是,有些功能需要改进。因此,优化或新的设计思路是必要的。为此,需要一种既快速又精确的电磁仿真工具。为了满足所有可能的要求,它应该是完全三维(3-D)和矢量的。 Bava等人首先提出了具有这种特征的模型。 (“垂直腔表面发射激光器中矢量场的三维模型”,Phys.Rev.A,vol.63,p.23816,2001),基于耦合模式理论。这里,将对与特定设备有关的应用进行综述:非完美圆形VCSEL和相耦合阵列。与相应实验结果的比较证明是非常令人满意的。因此,我们被鼓励使用该模型通过使用小型浮雕光栅来获得保偏VCSEL的设计标准。已经证明了光栅固定VCSEL偏振的能力。但是,不同的配置不允许人们对此技术有清晰的了解。而且,据我们所知,由于处理相应的完整3D和矢量问题的复杂性,从未展示过带有光栅的VCSEL的完整仿真。这是我们第一次有可能在相同的基础上比较不同的配置。特别是,我们将评估介电和金属光栅的性能。通过我们在此处提出的设计,可以预测单横向和单极化模式的工作,并轻松抑制其他极化(约45 dB)。

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