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Effects of two-photon absorption on all optical logic operation based on quantum-dot semiconductor optical amplifiers

机译:基于量子点半导体光放大器的双光子吸收对所有光学逻辑操作的影响

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摘要

We investigate all-optical logic operation in quantum-dot semiconductor optical amplifier (QD-SOA) based Mach-Zehnder interferometer considering the effects of two-photon absorption (TPA). TPA occurs during the propagation of sub-picosecond pulses in QD-SOA, which leads to a change in carrier recovery dynamics in quantum-dots. We utilize a rate equation model to take into account carrier refill through TPA and nonlinear dynamics including carrier heating and spectral hole burning in the QD-SOA. The simulation results show the TPA-induced pumping in the QD-SOA can reduce the pattern effect and increase the output quality of the all-optical logic operation. With TPA, this scheme is suitable for high-speed Boolean logic operation at 320Gb/s.
机译:我们研究了基于量子点半导体光放大器(QD-SOA)的马赫-曾德尔干涉仪中考虑双光子吸收(TPA)效应的全光逻辑运算。TPA发生在亚皮秒脉冲在QD-SOA中的传播过程中,这导致量子点中载流子恢复动力学的变化。我们利用速率方程模型来考虑通过TPA的载流子重新填充,以及量子点SOA中的非线性动力学,包括载流子加热和光谱烧孔。仿真结果表明,在QD-SOA中,TPA诱导的泵浦可以降低模式效应,提高全光逻辑运算的输出质量。使用TPA,该方案适用于320Gb/s的高速布尔逻辑运算。

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