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Four Wave Mixing control in a photonic molecule made by silicon microring resonators

机译:硅微环谐振器制成的光子分子中的四波混频控制

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摘要

Four Wave Mixing (FWM) is the main nonlinear interaction in integrated silicon devices, which finds diffuse use in all-optical signal processing and wavelength conversion. Despite the numerous works on coupled resonator devices, which showed record conversion efficiencies and broadband operation, the possibility to coherently control the strength of the stimulated FWM interaction on a chip has received very limited attention. Here, we demonstrate both theoretically and experimentally, the manipulation of FWM in a photonic molecule based on two side coupled silicon microring resonators. The active tuning of the inter-resonator phase and of their eigenfrequencies allows setting the molecule in a sub-radiant state, where FWM is enhanced with respect to the isolated resonators. On the other hand, we can reconfigure the state of the photonic molecule to have energy equipartition among the resonators, and suppress FWM by making the two Signal waves to interfere destructively in the side coupled waveguides. This work constitutes an experimental demonstration of the control of a nonlinear parametric interaction via coherent oscillation phenomena in an integrated optical device.
机译:四波混频(FWM)是集成硅器件中的主要非线性相互作用,它在全光信号处理和波长转换中得到了广泛的应用。尽管在耦合谐振器设备上进行了大量工作,显示出记录转换效率和宽带操作,但相干控制芯片上受激FWM交互作用的强度的可能性受到了非常有限的关注。在这里,我们在理论和实验上都演示了基于两侧耦合的硅微环谐振器的光子分子中FWM的操纵。谐振器间相位及其本征频率的主动调整允许将分子设置为亚辐射状态,相对于隔离的谐振器,FWM得以增强。另一方面,我们可以重新配置光子分子的状态,使它们在谐振器之间具有能量分配,并通过使两个信号波在侧面耦合的波导中产生相消干涉来抑制FWM。这项工作构成了在集成光学设备中通过相干振荡现象控制非线性参数相互作用的实验演示。

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