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Analysis of TE and TM modes in DFB lasers by two-dimensional theory

机译:二维理论分析DFB激光器中的TE和TM模式

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摘要

The two-dimensional theory of a distributed feedback (DFB) laser (which was previously presented and applied to the analysis of the laser threshold conditions for the transverse-electric (TE) mode in a simple three-layer waveguide structure) is developed to treat both TE and transverse-magnetic (TM) modes in a four-layer waveguide structure with a thin grating layer, which more closely reflects actual DFB laser structure. The differences between TE and TM modes for the dispersion relations and the laser threshold conditions are clarified. The effects of the waveguide structure (including grating layer thickness, refractive indexes of layers, coupling constant, and corrugation period) on the threshold gains and the gain differences between the two longitudinal modes on both sides of the Bragg frequencies are studied in detail for both TE and TM modes.
机译:发展了分布式反馈(DFB)激光的二维理论(先前已经提出并将其应用于简单三层波导结构中的横向电(TE)模式的激光阈值条件的分析)具有薄光栅层的四层波导结构中的TE模式和横向磁(TM)模式都更紧密地反映了实际的DFB激光器结构。明确了TE和TM模式之间的色散关系和激光阈值条件之间的差异。研究了波导结构(包括光栅层的厚度,层的折射率,耦合常数和波纹周期)对阈值增益和布拉格频率两侧的两个纵向模式之间的增益差的影响。 TE和TM模式。

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