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Ultra-Efficient and Broadband Nonlinear AlGaAs-on-Insulator Chip for Low-Power Optical Signal Processing

机译:用于低功率光信号处理的超高效宽带非线性绝缘体上AlGaAs芯片

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Four-wave mixing (FWM) is a versatile optical nonlinear parametric process that enables a plethora of signal processing functionalities in optical communication. Realization of efficient and broadband all-optical signal processing with ultra-low energy consumption has been elusive for decades. Although tremendous efforts have been put into developing various material platforms, it has remained a challenge to obtain both high efficiency and broadband operation. Here, an aluminum gallium arsenide nonlinear chip with high FWM conversion efficiency per length per pump power and an ultra-broad bandwidth is presented. Combining an ultra-high material nonlinearity and strong effective nonlinear enhancement from a high-index-contrast waveguide layout, an ultra-high conversion efficiency of -4 dB is obtained in a 3-mm-long nano-waveguide. Taking advantage of high-order dispersion, a scheme is presented to realize an ultra-broad continuous conversion bandwidth covering 1280-2020 nm. A microresonator is also utilized to demonstrate a conversion efficiency enhancement gain of more than 50 dB with respect to a waveguide device, which significantly reduces the power consumption. Moreover, wavelength conversion of an optical serial data signal is performed at a bit rate beyond terabit-per-second, showing the capabilities of this III-V semiconductor material for broadband optical signal processing.
机译:四波混频(FWM)是一种通用的光学非线性参数过程,可实现光通信中的多种信号处理功能。几十年来,难以实现具有超低能耗的高效宽带全光信号处理。尽管在开发各种材料平台上已付出了巨大的努力,但要同时获得高效率和宽带运营仍然是一个挑战。在此,提出了一种砷化铝镓非线性非线性芯片,该芯片在每泵浦功率的每个长度上具有高FWM转换效率,并且具有超宽带宽。结合超高材料非线性和来自高折射率对比波导布局的强大有效非线性增强,在3毫米长的纳米波导中获得了-4 dB的超高转换效率。提出了利用高阶色散的方案来实现覆盖1280-2020 nm的超宽连续转换带宽。相对于波导装置,还利用微谐振器证明了超过50 dB的转换效率增强增益,从而显着降低了功耗。而且,光串行数据信号的波长转换以超过每秒兆兆比特的比特率执行,显示了该III-V半导体材料用于宽带光信号处理的能力。

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