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All-optical signal reshaping by four-wave mixing in passive micro-ring resonators

机译:通过无源微环谐振器中的四波混合重塑全光信号

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摘要

A novel approach for realization of all-optical pulse reshaping in an integrated microring resonator is proposed. The concept presented in this study is based on four-wave mixing in a passive GaAs/AlGaAs microring resonator side coupled to a bus waveguide, taking into account all higher order non-linear effects such as self-phase modulation (SPM), cross-phase modulation (XPM), pump depletion and two-photon absorption (TPA), the latter being the dominant process here. We also include in the description changes in absorption and refractive indexes induced by free-carriers generated by TPA. This scheme is investigated for its regenerative characteristics using an optical pump modulation scheme. The application of the modulation bit stream in the pump wave leads in a conjugate wave power being proportional to the square of the pump power, resulting in a corresponding extinction ratio improvement. Because of the strong TPA, enhanced by the resonance effect, the converted signal power saturates as pump power increases, providing noise suppression at high power levels. A detailed study of the static and dynamic reshaping characteristics of the wavelength converter has been carried out. Its performance, evaluated by extinction ratio (ER) and Q factor calculations, showed satisfactory regenerative properties up to 10Gb/s.
机译:提出了一种用于实现集成微管谐振器中的全光脉冲重塑的新方法。本研究呈现的概念基于耦合到总线波导的被动GaAs / AlGaAS微管谐振器侧的四波混合,考虑到诸如自相调制(SPM),交叉的所有高阶非线性效果相位调制(XPM),泵耗尽和双光子吸收(TPA),后者在这里是主导过程。我们还包括描述由TPA产生的自由载体引起的吸收和折射率的变化。使用光学泵调制方案研究了其再生特性的该方案。在泵波中的调制比特流的应用在与泵功率的平方成比例的共轭波功率中,导致相应的消光比改善。由于强大的TPA,通过谐振效应增强,转换的信号功率随着泵功率的增加而饱和,在高功率水平下提供噪声抑制。已经进行了对波长转换器的静态和动态再振作特性的详细研究。通过消光比(ER)和Q因子计算评估的性能显示出令人满意的再生性能,高达10GB / s。

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