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Phase-sensitive amplification of a QPSK signal using a dispersion engineered silicon-graphene oxide hybrid waveguide

机译:使用分散工程化的硅 - 石墨烯氧化物杂交波导的相敏扩增QPSK信号

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We numerically investigate phase-sensitive amplification of a quadrature phase shift keying (QPSK) signal in a 35 mu m dispersion engineered silicon-graphene oxide hybrid waveguide. The four-wave mixing efficiency is effectively enhanced by exploiting the ultrahigh Kerr nonlinearity and low loss of graphene oxide in the ultrawide wavelength range. A new structure of dispersion flat silicon-graphene oxide hybrid waveguide is proposed and used to achieve the phase regeneration of a QPSK signal using a dual-conjugated-pump degenerate scheme. The phase-dependent gain and phase-to-phase transfer functions are calculated to analyze the properties of a phase-sensitive amplifier (PSA). The constellation diagrams of the QPSK signal and the error vector magnitude are used to assess the regeneration capacity. The simulation results show that the proposed PSA with a good phase noise squeezing capability has potential applications in all-optical signal processing. (C) 2020 Optical Society of America
机译:我们在35μm色散工程化硅 - 石墨烯氧化物波动波导波导波导中进行数值研究相敏感的相敏扩增键相移键(QPSK)信号。通过利用超轻kerr非线性和在超相对于波长范围内的石墨烯氧化物的低损失来有效地增强了四波混合效率。提出了一种分散的扁平硅 - 石墨烯氧化物杂交波导的新结构,并用于使用双缀合泵简高方案来实现QPSK信号的相位再生。计算相位依赖的增益和相移函数以分析相敏放大器(PSA)的性质。 QPSK信号的星座图和误差矢量幅度用于评估再生能力。仿真结果表明,具有良好相位噪声挤压能力的所提出的PSA在全光信号处理中具有潜在的应用。 (c)2020美国光学学会

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    《Applied optics 》 |2020年第7期| 共7页
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