【2h】

Dispersion-controlled slow light in photonic crystal waveguides

机译:光子晶体波导中色散受控的慢光

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摘要

Slow light with a markedly low group velocity is a promising solution for optical buffering and advanced time-domain optical signal processing. It is also anticipated to enhance linear and nonlinear effects and so miniaturize functional photonic devices because slow light compresses optical energy in space. Photonic crystal waveguide devices generate on-chip slow light at room temperature with a wide bandwidth and low dispersion suitable for short pulse transmission. This paper first explains the delay-bandwidth product, fractional delay, and tunability as crucial criteria for buffering capacity of slow light devices. Then the paper describes experimental observations of slow light pulse, exhibiting their record high values. It also demonstrates the nonlinear enhancement based on slow light pulse transmission.
机译:具有显着较低的群速度的慢光是用于光缓冲和高级时域光信号处理的有前途的解决方案。由于慢速光会压缩空间中的光能,因此还有望增强线性和非线性效应并因此使功能性光子器件小型化。光子晶体波导器件在室温下产生片上慢光,具有宽带宽和低色散,适合短脉冲传输。本文首先解释了延迟带宽乘积,小数延迟和可调谐性,这些都是慢速照明设备缓冲能力的关键标准。然后,本文描述了慢光脉冲的实验观察结果,并显示出创纪录的高值。它还演示了基于慢光脉冲传输的非线性增强。

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