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Theoretical studies of GaInP-AlGaInP strained quantum-well lasers including spin-orbit split-off band effect

机译:GaInP-AlGaInP应变量子阱激光器的自旋轨道分裂带效应的理论研究

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We studied the GaInP-AlGaInP strained quantum-well laser characteristics, taking into account the spin-orbit split-off bands. When the well width is kept constant at 85 /spl Aring/, the threshold current of the unstrained quantum-well structure is most degraded by the effect of the spin orbit split-off subbands, due to the larger hole density of states near the band-edge. While the linear gain of the compressive-strained quantum well is slightly changed by the effect, it has the lowest threshold current with the lower threshold gain. In the tensile-strained quantum-well structure, the spin-orbit split-off bands improve the differential gain because they increase the density of states at the valence band-edge. When the lasing wavelength is fixed at 630 nm, the threshold current of the compressive-strained quantum well is the lowest as well. The tensile-strained quantum well has lower threshold current than the unstrained quantum well, and this phenomena is not observed in the analysis without the spin-orbit split-off bands. However, the reduction of threshold current of the tensile-strained quantum well is smaller than that of compressive-strained quantum well, The tensile strain is more preferable for high speed modulation because of its large differential gain, due to the mixing between the light hole and the spin-orbit split-off subbands.
机译:考虑到自旋轨道分离带,我们研究了GaInP-AlGaInP应变量子阱激光器的特性。当阱宽度保持恒定在85 / spl Aring /时,由于自旋轨道分裂子带的影响,无应变量子阱结构的阈值电流会最大程度地降低,这是因为该带附近的状态的空穴密度更大-边缘。虽然压缩应变量子阱的线性增益因该影响而略有变化,但它具有最低的阈值电流和较低的阈值增益。在拉伸应变量子阱结构中,自旋轨道分离带提高了微分增益,因为它们增加了价带边缘的态密度。当激射波长固定在630 nm时,压缩应变量子阱的阈值电流也最低。拉伸应变量子阱比未应变量子阱具有更低的阈值电流,并且在没有自旋轨道分离带的分析中没有观察到这种现象。但是,拉伸应变量子阱的阈值电流的减小小于压缩应变量子阱的阈值电流。由于光孔之间的混合,拉伸应变的差分增益大,因此对于高速调制更优选。和自旋轨道分离子带。

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