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Measurement and analysis of optical gain spectra in 1.6 to 1.8 μm InAs/InP (100) quantum-dot amplifiers

机译:在1.6至1.8μmInAs / InP(100)量子点放大器中测量和分析光学增益谱

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Small signal modal gain measurements have been performed on two-section ridge waveguide InAs/InP (100) quantum-dot amplifiers that we have fabricated with a peak gain wavelength around 1.70 μm. The amplifier structure is suitable for monolithic active-passive integration, and the wavelength region and wide gain bandwidth are of interest for integrated devices in biophotonic applications. A 65 nm blue shift of the peak wavelength in the gain spectrum has been observed with an increase in injection current density from 1,000 to 3,000 A/cm2. The quantum-dot amplifier gain spectra have been analyzed using a quantum-dot rate-equation model that considers only the carrier dynamics. The comparison between measured and simulated spectra shows that two effects in the quantum-dot material introduce this large blue shift in the gain spectrum. The first effect is the carrier concentration dependent state filling with carriers of the bound excited and ground states in the dots. The second effect is the decrease in carrier escape time from the dots to the wetting layer with decreasing dot size.
机译:在两节脊形波导InAs / InP(100)量子点放大器上进行了小信号模态增益测量,我们制造的峰值增益波长约为1.70μm。该放大器结构适合于单片式有源-无源集成,并且波长区域和宽增益带宽对于生物光子应用中的集成器件非常重要。随着注入电流密度从1,000 A / cm 2 增加,观察到增益光谱中峰值波长发生65 nm蓝移。已经使用仅考虑载流子动力学的量子点速率方程模型分析了量子点放大器增益频谱。测量光谱和模拟光谱之间的比较表明,量子点材料中的两种效应在增益光谱中引入了这种大的蓝移。第一个效果是载流子浓度依赖状态填充点中受激激发态和基态的载流子。第二个效果是随着点尺寸的减小,从点到润湿层的载流子逸出时间减少。

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