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Two dimension current transport of the novel large coupled optical cavity semiconductor lasers

机译:新型大耦合光腔半导体激光器的二维电流传输

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In order to study the current transport of the novel semiconductor laser diode, which has several active regions cascaded by tunnel junctions, a two dimension model is built. By using the finite difference method, the current density and carriers within the device can be obtained. According to the simulation results, there exists a severe current spreading for the novel device, so we proposed a double-side strip structure to confine the carriers along the lateral direction. Experimental result shows that for a 4-active region laser combined with the double-side strip structure, the slop efficiency is as high as 2.97W/A, and an output power of 4.44W can be reached at 2A.
机译:为了研究新型半导体激光二极管的电流传输,其具有若干有源区通过隧道结级联,构建了两个维度模型。通过使用有限差分方法,可以获得装置内的电流密度和载波。根据模拟结果,新型装置存在严重的电流展开,因此我们提出了一种双面条形结构,以沿着横向限制载体。实验结果表明,对于4个有源区激光器与双侧条状结构结合,坡度效率高达2.97W / A,并且可以在2A处达到4.44W的输出功率。

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