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Simple semi-analytical model for bistable cross-gain modulation in quantum dot VCSOAs

机译:量子点VCSOA中双稳态交叉增益调制的简单半解析模型

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A novel semi-analytical model for cross-gain modulation (XGM) in quantum dot vertical-cavity semiconductor optical amplifier has been derived. The derived model, which is simple, requires small computational time compared with numerical simulation and can efficiently be used to investigate the optical bistable/stable characteristics of the device. Large XGM bandwidth can also be obtained when the device operates in the bistable region and in the stable region close to the bistable edge. A figure of merit is proposed to optimize the complicated tradeoff between the XGM bandwidth, efficiency, applied current and the input pump to probe ratio. We find that optimum characteristics can be obtained in our investigated device when the probe wavelength is detuned by 9 Å above the resonant wavelength and when a specific CW probe density is applied to the input of the device.
机译:推导了量子点垂直腔半导体光放大器中跨增益调制(XGM)的新型半分析模型。导出的模型很简单,与数值模拟相比需要较少的计算时间,并且可以有效地用于研究设备的光学双稳态/稳态特性。当设备在双稳态区域和靠近双稳态边缘的稳定区域中操作时,也可以获得较大的XGM带宽。提出了一个品质因数,以优化XGM带宽,效率,施加电流和输入泵与探头之比之间的复杂权衡。我们发现,当探头波长比谐振波长高9Å时失谐,并且将特定CW探头密度应用于设备的输入时,可以在我们研究的设备中获得最佳特性。

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