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首页> 外文期刊>Journal of optics >Influence of optical pumping wavelength on the ultrafast gain and phase recovery acceleration of quantum-dot semiconductor optical amplifiers
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Influence of optical pumping wavelength on the ultrafast gain and phase recovery acceleration of quantum-dot semiconductor optical amplifiers

机译:光泵浦波长对量子点半导体光放大器超快增益和相位恢复加速的影响

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摘要

We numerically investigate the influence of the optical pumping wavelength on the ultrafast gain and phase recovery acceleration of quantum-dot (QD) semiconductor optical amplifiers (SOAs) by solving 1088 coupled rate equations. The temporal variations of the gain and phase recovery response at the ground state (GS) of QDs are calculated at various signal wavelengths when the optical pumping wavelengths at the excited state (ES) of QDs are varied. The phase recovery response is fastest when the wavelength of the signal and pumping beams corresponds to the respective emission wavelength of the GS and the ES in the same size of QDs. The absorption efficiency of the optical pumping beam at the ES is determined by the Lorentzian line shape function of the homogeneous broadening.
机译:我们通过求解1088耦合速率方程,数值研究了光泵浦波长对量子点(QD)半导体光放大器(SOA)的超快增益和相位恢复加速的影响。当改变QD激发态(ES)的光泵浦波长时,在各种信号波长下计算QD的基态(GS)的增益和相位恢复响应的时间变化。当信号和泵浦光束的波长对应于相同尺寸QD的GS和ES的发射波长时,相位恢复响应最快。光学泵浦光束在ES处的吸收效率取决于均匀展宽的洛伦兹线形函数。

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