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采用极限趋肤深度亚波长光栅波导的高密度集成延迟线。

High-density integrated delay line using extreme skin-depth subwavelength grating waveguides.

出版信息

Opt Lett. 2023 Apr 1;48(7):1662-1665. doi: 10.1364/OL.479003.

Abstract

Optical delay lines control the flow of light in time, introducing phase and group delays for engineering interferences and ultrashort pulses. Photonic integration of such optical delay lines is essential for chip-scale lightwave signal processing and pulse control. However, typical photonic delay lines based on long spiral waveguides require extensively large chip footprints, ranging from mm to cm scales. Here we present a scalable, high-density integrated delay line using a skin-depth engineered subwavelength grating waveguide, i.e., an extreme skin-depth (eskid) waveguide. The eskid waveguide suppresses the crosstalk between closely spaced waveguides, significantly saving the chip footprint area. Our eskid-based photonic delay line is easily scalable by increasing the number of turns and should improve the photonic chip integration density.

摘要

光延迟线可以控制光在时间上的传播,通过引入相位和群延迟来实现工程干扰和超短脉冲的控制。这种光延迟线的光子集成对于片上光波信号处理和脉冲控制至关重要。然而,基于长螺旋波导的典型光子延迟线需要非常大的芯片面积,范围从毫米到厘米级。在这里,我们提出了一种使用深度工程亚波长光栅波导(即极端深度(eskid)波导)的可扩展、高密度集成延迟线。eskid 波导抑制了紧密间隔波导之间的串扰,显著节省了芯片面积。我们的基于 eskid 的光子延迟线可以通过增加匝数轻松扩展,并且应该提高光子芯片集成密度。

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