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Reflection from a free carrier front via an intraband indirect photonic transition

机译:通过带内间接光子跃迁从自由载波前端反射

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摘要

The reflection of light from moving boundaries is of interest both fundamentally and for applications in frequency conversion, but typically requires high pump power. By using a dispersion-engineered silicon photonic crystal waveguide, we are able to achieve a propagating free carrier front with only a moderate on-chip peak power of 6 W in a 6 ps-long pump pulse. We employ an intraband indirect photonic transition of a co-propagating probe, whereby the probe practically escapes from the front in the forward direction. This forward reflection has up to 35% efficiency and it is accompanied by a strong frequency upshift, which significantly exceeds that expected from the refractive index change and which is a function of group velocity, waveguide dispersion and pump power. Pump, probe and shifted probe all are around 1.5 µm wavelength which opens new possibilities for “on-chip” frequency manipulation and all-optical switching in optical telecommunications.
机译:从移动边界反射的光从根本上和在频率转换应用中都是令人感兴趣的,但通常需要高泵浦功率。通过使用色散设计的硅光子晶体波导,我们能够在6µps长的泵浦脉冲中以仅6µW的中等片上峰值功率实现传播的自由载流子前沿。我们采用了共传播探针的带内间接光子跃迁,从而该探针实际上从前向向前逃逸。这种前向反射效率高达35%,并伴随着强烈的频率上移,该频率上移大大超过了折射率变化所预期的频率上移,并且是群速度,波导色散和泵浦功率的函数。泵浦,探头和移位探头的波长都在1.5μm左右,这为光通信中的“片上”频率操纵和全光切换开辟了新的可能性。

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