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Band filling in GaAs-GaAlAs quantum well graded-index injection lasers studied by photocurrent spectroscopy

机译:通过光电流光谱研究的GAAS-GAALAS量子井渐变率注射激光器的带填充

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GaAs-GaAlAs quantum well (QW) structures with a graded-index waveguide (GRIN) as used in high-power laser arrays have been studied by photocurrent spectroscopy in terms of dependence on temperature, polarization of light and additional unmodulated (DC) light in the photon energy range of optical transitions between bound QW states. In TM polarization, the spectrum is dominated by the first QW transition between the light hole and electron subbands lh1-e1. Higher transitions are not detected against the background of high absorption or are covered by the GRIN absorption. According to the observed temperature dependence, the escape mechanism of carriers from the QW is assigned to thermionic emission. The escape is determined from an Arrhenius plot and related to the band model. The photoresponse near the QW transitions is strongly suppressed by additional unmodulated light with photon energy of 1.96 eV. From the spectra recorded with different DC light intensities, the conclusion was drawn that this is only partially due to the decrease of the built-in voltage. The main effect is due to bleaching of QW transitions by subsequent filling of energy states in the QWs. The dependence on DC light intensity is strongly nonlinear due to the small density of states of QW systems.
机译:通过对温度,光的偏振和额外的未调制(DC)光的依赖性,通过光电流光谱研究了具有高功率激光器阵列中使用的高功率激光器阵列中使用的渐变索引波导(GRIN)的GaAs-gaalas量子阱(qw)结构。边界QW状态之间的光学转换的光子能量范围。在TM偏振中,光谱由灯孔和电子子带LH1-E1之间的第一QW过渡管制。在高吸收的背景下未检测到较高的过渡,或者由胶质吸收覆盖。根据观察到的温度依赖性,将载体从QW的擒纵机构分配给热离子发射。逃生是从Arrhenius图决定的,并与频带模型相关。 QW过渡附近的光响应受到1.96eV的光子能量的额外未调制的光线。从记录的光谱从不同的DC光强度记录,得出的结论是,这仅是由于内置电压的降低而部分。主要效应是由于QW中的能量状态填充QW过渡的漂白原因。由于QW系统状态小,对DC光强度的依赖性是强烈的非线性。

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