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On-chip inter-modal Brillouin scattering

机译:片上模态布里渊散射

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摘要

Brillouin nonlinearities—which result from coupling between photons and acoustic phonons—are exceedingly weak in conventional nanophotonic silicon waveguides. Only recently have Brillouin interactions been transformed into the strongest and most tailorable nonlinear interactions in silicon using a new class of optomechanical waveguides that control both light and sound. In this paper, we use a multi-mode optomechanical waveguide to create stimulated Brillouin scattering between light-fields guided in distinct spatial modes of an integrated waveguide for the first time. This interaction, termed stimulated inter-modal Brillouin scattering, decouples Stokes and anti-Stokes processes to enable single-sideband amplification and dynamics that permit near-unity power conversion. Using integrated mode multiplexers to address separate optical modes, we show that circulators and narrowband filters are not necessary to separate pump and signal waves. We also demonstrate net optical amplification and Brillouin energy transfer as the basis for flexible on-chip light sources, amplifiers, nonreciprocal devices and signal-processing technologies.
机译:由光子和声子之间的耦合引起的布里渊非线性在传统的纳米光子硅波导中非常弱。直到最近,才使用新型的控制光和声的光机械波导将布里渊相互作用转化为硅中最强,最可定制的非线性相互作用。在本文中,我们首次使用多模光机电波导在集成波导的不同空间模式下引导的光场之间创建受激布里渊散射。这种相互作用被称为受激模态布里渊散射,它使斯托克斯和反斯托克斯过程解耦,以实现单边带放大和动态特性,从而允许近统一的功率转换。使用集成模式多路复用器解决单独的光学模式,我们表明环行器和窄带滤波器对于分离泵浦和信号波不是必需的。我们还将展示净光放大和布里渊能量传输,作为灵活的片上光源,放大器,不可逆设备和信号处理技术的基础。

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