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Scattering of a cross-polarized linear wave by a soliton at an optical event horizon in a birefringent nanophotonic waveguide

机译:孤子在双折射纳米光子波导中的光学事件视界处对交叉偏振线性波的散射。

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摘要

The scattering of a linear wave on an optical event horizon, induced by a cross-polarized soliton, is experimentally and numerically investigated in integrated structures. The experiments are performed in a dispersion-engineered birefringent silicon nanophotonic waveguide. In stark contrast with copolarized waves, the large difference between the group velocity of the two cross-polarized waves enables a frequency conversion almost independent of the soliton wavelength. It is shown that the generated idler is only shifted by 10 nm around 1550 nm over a pump tuning range of 350 nm. Simulations using two coupled full vectorial nonlinear SchrAND
机译:在集成结构中,通过实验和数值研究了由交叉极化孤子引起的线性波在光学事件视界上的散射。实验是在色散工程双折射硅纳米光子波导中进行的。与同极化波形成鲜明对比的是,两个交叉极化波的群速度之间的巨大差异使得频率转换几乎与孤子波长无关。结果表明,在350 nm的泵浦调谐范围内,所产生的惰轮仅在1550 nm左右偏移10 nm。使用两个耦合的全矢量非线性SchrAND进行的仿真

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