首页> 外文期刊>IEEE Journal of Quantum Electronics >Small-signal response of 1.3-Μm InAsP-InGaAsP quantum-well laser diodes obtained with a terahertz-bandwidth frequency comb
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Small-signal response of 1.3-Μm InAsP-InGaAsP quantum-well laser diodes obtained with a terahertz-bandwidth frequency comb

机译:用太赫兹带宽频率梳获得的1.3μmInAsP-InGaAsP量子阱激光二极管的小信号响应

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We describe an optical method to carry out small-signal frequency response measurements in laser diodes. This method uses a midinfrared tunable femtosecond optical parametric oscillator (OPO), whose frequency spectrum consists of a comb composed by the multiple harmonics of the 81-MHz repetition rate of the same intensity and extending over 2 THz. Tuning of the OPO allows selective generation of carriers in the different regions of the test laser active area without compromising the frequency bandwidth. The small-signal frequency response of the test laser is retrieved from the intensity changes in the frequency comb spectrum. We apply this method to investigate the small-signal frequency response of 1.3-Μm InAsP quantum-well (QW) lasers. The results of these experiments show that the intrinsic frequency bandwidth of these lasers is limited to less than 10 GHz as a result of state filling and related carrier escape out of the well. An analysis of the frequency response traces through a solution of a system of rate equations allows us to estimate the magnitude of the gain compression associated with this process.
机译:我们描述了一种在激光二极管中执行小信号频率响应测量的光学方法。此方法使用中红外可调谐飞秒光学参量振荡器(OPO),其频谱由一个梳状组成,该梳状由强度相同的81 MHz重复频率的多个谐波组成,并延伸超过2 THz。 OPO的调整允许在测试激光有效区域的不同区域中选择性地产生载流子,而不会影响频率带宽。从频率梳频谱中的强度变化中检索出测试激光器的小信号频率响应。我们应用这种方法来研究1.3μmInAsP量子阱(QW)激光器的小信号频率响应。这些实验的结果表明,由于状态填充和相关载波从井中逸出,这些激光器的固有频率带宽被限制为小于10 GHz。通过速率方程式系统的解决方案对频率响应曲线进行分析,使我们能够估算与此过程相关的增益压缩的幅度。

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