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Modified model for four-wave mixing-based wavelength conversion in silicon micro-ring resonators

机译:硅微环谐振器中基于四波混合的波长转换的修改模型

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摘要

A modified model for wavelength conversion based on the four-wave mixing (FWM) in a silicon micro-ring resonator is presented. Unlike previous contributions, the nonlinear phase shifts caused by self-phase modulation and cross-phase modulation are also taken into account in the present theoretical analysis besides the linear propagation loss and the nonlinear losses caused by two-photon absorption and free-carrier absorption. Analysis shows that the nonlinear phase shifts will cause different red shifts for the pump and signal (or converted) resonant wavelengths, and consequently an additional wavelength difference between the signal transmission dip and the efficiency peak, which will increase/decrease the conversion efficiency of the signal channel far fromear the pump. The conversion efficiency and the conversion peak width of each signal channel are both affected by the micro-ring radius and coupling coefficient. A broader conversion peak width can be obtained by using a micro-ring resonator with a smaller Q factor.
机译:提出了一种在硅微环谐振器中基于四波混频(FWM)的波长转换的改进模型。与先前的贡献不同,在本理论分析中,除了线性传播损耗和由双光子吸收和自由载流子吸收引起的非线性损耗外,在本理论分析中还考虑了由自相位调制和交叉相位调制引起的非线性相移。分析表明,非线性相移将对泵浦和信号(或转换后的)谐振波长产生不同的红移,并因此在信号透射率下降和效率峰值之间产生一个额外的波长差,这将增加/降低该信号的转换效率。远离/靠近泵的信号通道。每个信号通道的转换效率和转换峰宽均受微环半径和耦合系数的影响。通过使用Q因子较小的微环谐振器,可以获得较宽的转换峰宽。

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