首页> 外文会议>Progress in electromagnetics research symposium 2008 (PIERS 2008) >Optical Mode Parameters of the 2.3-μm Al(In)GaAsSb/GaSb Ridge-waveguide Laser Diodes and Laser Diode Arrays
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Optical Mode Parameters of the 2.3-μm Al(In)GaAsSb/GaSb Ridge-waveguide Laser Diodes and Laser Diode Arrays

机译:2.3μmAl(In)GaAsSb / GaSb脊形波导激光二极管和激光二极管阵列的光学模式参数

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摘要

Optical field distribution, effective indices and optical losses of the ridge-waveguides and ridge-waveguide arrays of the 2.3 μm InGaAsSb/AlGaAsSb Type-I heterostructure laser diodes were simulated. The ridge waveguide depth and width were varied in the ranges from 0.5 to 1.45 μm and from 5 to 20 μm, respectively, in order to study effects of the ridge geometry on the optical mode parameters. Discrimination between groups of modes of the ridgewaveguide array with different optical field distributions was maximized by narrowing the array pumping region. The simulation was performed by Beam Propagation Method (BPM) with software BeamProp from Rsoft using experimental data on the material indices. Processing of the output data from the BeamProp were programmed in MathCAD favoring reduction of time in repetitive calculations and data analysis.
机译:模拟了2.3μmInGaAsSb / AlGaAsSb I型异质结构激光二极管的脊形波导和脊形波导阵列的光场分布,有效指数和光损耗。脊形波导的深度和宽度分别在0.5到1.45μm和5到20μm的范围内变化,以便研究脊形几何形状对光学模式参数的影响。通过缩小阵列泵浦区域,可以使具有不同光场分布的脊形波导阵列的各组模式之间的区别最大化。通过使用Rsoft的BeamProp软件通过Beam Propagation Method(BPM)使用材料指数的实验数据进行了模拟。在MathCAD中对BeamProp输出数据的处理进行了编程,从而有助于减少重复计算和数据分析中的时间。

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