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Comparison of Exactness of Scalar and Vectorial Optical Methods Used to Model a VCSEL Operation

机译:用于模拟VCSEL操作的标量和矢量光学方法精确度的比较

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摘要

In the paper, a comparison between results of the optical scalar and vectorial optical methods, using the scalar effective frequency method and the vectorial method of lines, respectively, as their typical examples, applied for simulating an operation of vertical-cavity surface-emitting diode lasers (VCSELs) is presented. Both optical approaches has been applied to simulate an operation of the standard 1.3-mum GaAs-based oxide-confined GaInAsN double quantum-well VCSEL, but comparison conclusions seem to be more general and concerns all VCSELs. Validity limits of the simplified scalar approach have been determined by comparing its approximate results with more exact ones obtained with the aid of the accurate vectorial model. The scalar model has been found to be quite exact in the case of a determination of the wavelength of emitted radiation, whereas its exactness in the lasing threshold analysis is much worse, especially in the case of higher order modes, smaller aperture diameters and/or weak radial optical guidance. Our analysis leads also to more general designing conclusions concerning the optimal position and the thickness of the oxide layer assuring, respectively, the stable single mode operation and the lowest threshold gain
机译:在本文中,分别以标量有效频率法和线矢量法为例,分别比较了光标量法和矢量光学法的结果,以模拟垂直腔面发射二极管的工作情况激光器(VCSEL)。两种光学方法均已应用于模拟标准的1.3微米基于GaAs的氧化物限制的GaInAsN双量子阱VCSEL的操作,但是比较结论似乎更为笼统,涉及所有VCSEL。通过将其近似结果与借助精确矢量模型获得的更精确结果进行比较,可以确定简化标量方法的有效性极限。已经发现,在确定发射辐射的波长的情况下,标量模型非常精确,而在激光阈值分析中,它的精确性要差得多,尤其是在高阶模,较小的孔径和/或情况下径向光导弱。我们的分析还得出关于氧化物层的最佳位置和厚度的更一般的设计结论,分别确保了稳定的单模运行和最低的阈值增益

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