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Mode conversion using stimulated Brillouin scattering in nanophotonic silicon waveguides

机译:在纳米光子硅波导中使用受激布里渊散射的模式转换

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摘要

We theoretically and numerically investigate Stimulated Brillouin Scattering generated mode conversion in high-contrast suspended silicon nanophotonic waveguides. We predict significantly enhanced mode conversion when the linked effects of radiation pressure and motion of the waveguide boundaries are taken into account. The mode conversion is more than 10 times larger than would be predicted if the effect of radiation pressure is not taken into account: we find a waveguide length of 740 μm is required for 20dB of mode conversion, assuming a total pump power of 1W. This is sufficient to bring the effect into the realm of chip-scale photonic waveguides. We explore the interaction between the different types of acoustic modes that can exist within these waveguides, and show how the presence of these modes leads to enhanced conversion between the different possible optical modes.
机译:理论上和数值上研究刺激的布里渊散射产生的高造影悬浮硅纳米光电波导的模型转换。当考虑到辐射压力和波导边界的运动时,我们预测显着增强的模式转换。如果未考虑辐射压力的效果,则模式转换大于预测的10倍:我们发现20DB的模式转换所需的波导长度为740μm,假设总泵功率为1W。这足以使效果进入芯片级光子波导的领域。我们探讨了这些波导内可以存在的不同类型的声学模式之间的相互作用,并示出了这些模式的存在如何导致不同可能的光学模式之间的增强转换。

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