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Phase Recovery Acceleration of Quantum-Dot Semiconductor Optical Amplifiers by Optical Pumping to Quantum-Well Wetting Layer

机译:通过光泵浦到量子阱湿润层来加速量子点半导体光放大器的相恢复

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摘要

We theoretically investigate the phase recovery acceleration of quantum-dot (QD) semiconductor optical amplifiers (SOAs) by means of the optical pump injection to the quantum-well (QW) wetting layer (WL). We compare the ultrafast gain and phase recovery responses of QD SOAs in either the electrical or the optical pumping scheme by numerically solving 1088 coupled rate equations. The ultrafast gain recovery responses on the order of sub-picosecond are nearly the same for the two pumping schemes. The ultrafast phase recovery is not significantly accelerated by increasing the electrical current density, but greatly improved by increasing the optical pumping power to the QW WL. Because the phase recovery time of QD SOAs with the optical pumping scheme can be reduced down to several picoseconds, the complete phase recovery can be achieved when consecutive pulse signals with a repetition rate of 100 GHz is injected.
机译:我们从理论上研究了通过将光泵注入量子阱(QW)润湿层(WL)来实现量子点(QD)半导体光放大器(SOA)的相恢复加速。我们通过数值求解1088个耦合速率方程,比较了电或光泵浦方案中QD SOA的超快增益和相位恢复响应。对于两种泵浦方案,亚皮秒级的超快增益恢复响应几乎相同。增加电流密度并不会显着加速超快相恢复,但增加到QW WL的光泵浦功率会大大改善超快相恢复。由于采用光泵浦方案的QD SOA的相位恢复时间可以减少到几皮秒,因此当注入重复频率为100 GHz的连续脉冲信号时,可以实现完整的相位恢复。

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  • 来源
    《Japanese journal of applied physics》 |2013年第11issue1期|112101.1-112101.7|共7页
  • 作者

    Jungho Kim;

  • 作者单位

    Department of Information Display and Advanced Display Research Center, Kyung Hee University, Seoul 130-701, Republic of Korea;

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  • 正文语种 eng
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