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The influences of refractive index dispersion on the modal gain of a quantum-well laser

机译:折射率色散对量子阱激光器模态增益的影响

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摘要

A new self-consistent method (SCM) for single-quantum-well (SQW) AlGaAs-GaAs diode lasers is introduced to study systematically the influences of refractive-index dispersion on TE modal gain. The refractive-index dispersion of QW layers is calculated by the density matrix method. It is affected by the effective propagation constant of guided mode. Likewise, the transverse guided mode of QW lasers, as obtained by the transfer matrix method, is also influenced by the refractive-index dispersion. SCM, using the density matrix and transfer matrix methods self-consistently, provides the TE modal gain spectra. SCM's calculated results are compared with those of Dumke's approximation and show a decrease in energy of modal gain peak and a decline of modal gain values at high emission energies. The differences between these two methods are seen to increase with an increase of well width and to be unrelated to barrier height. Although not treated formally in this paper, we suggest that SCM results show a significantly superior match to real phenomena.
机译:引入了一种新的单量子阱(SQW)AlGaAs-GaAs二极管激光器自洽方法(SCM),系统地研究了折射率色散对TE模态增益的影响。 QW层的折射率色散通过密度矩阵法计算。它受到引导模式的有效传播常数的影响。同样,通过转移矩阵法获得的QW激光器的横向引导模式也受到折射率色散的影响。单片机使用密度矩阵和传递矩阵方法自洽地提供TE模态增益谱。将SCM的计算结果与Dumke近似的结果进行比较,结果表明,在高发射能量下,模态增益峰值的能量减小,而模态增益值的减小。可以看出,这两种方法之间的差异会随着井宽的增加而增加,并且与势垒高度无关。尽管本文未对形式进行正式处理,但我们建议SCM结果显示出与真实现象的明显匹配。

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