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反馈式法诺激光器中的光学双稳性和触发器功能。

Optical bistability and flip-flop function in feedback Fano laser.

作者信息

Liang Shih Lun, Mørk Jesper, Yu Yi

出版信息

Opt Express. 2024 Feb 26;32(5):8230-8248. doi: 10.1364/OE.510599.

Abstract

Optical bistability has the potential to emulate the capabilities of electrical flip-flops, offering plenty of applications in optical signal processing. Conventional optical bistable devices operate by altering the susceptibility of a nonlinear medium. This method, however, often results in drawbacks such as large device size, high energy consumption, or long switching times. This work proposes an optical bistable device incorporating strong optical feedback into a Fano laser. This leads to multiple stable states and introduces a region of bistability between the inherent Fano mode and a feedback-induced Fabry-Perot mode. Unlike conventional bistable devices, the Fano system exploits strong field localization in a nanocavity to control the properties of one of the laser mirrors. This configuration means that switching states can be achieved by modulating the mirror's loss rather than changing the susceptibility of the active medium. Importantly, modulation can be implemented locally on a nanocavity, bypassing the need to adjust the entire laser system. This leads to fast flip-flop actions with low energy consumption. The feedback Fano laser can be embodied in a compact microscopic structure, thus providing a promising approach towards integrated all-optical computation and on-chip signal processing.

摘要

光学双稳性有潜力模拟电子触发器的功能,在光信号处理中具有大量应用。传统的光学双稳器件通过改变非线性介质的磁化率来工作。然而,这种方法常常导致诸如器件尺寸大、能耗高或开关时间长等缺点。这项工作提出了一种将强光学反馈纳入法诺激光器的光学双稳器件。这导致了多个稳定状态,并在固有的法诺模式和反馈诱导的法布里 - 珀罗模式之间引入了一个双稳区域。与传统双稳器件不同,法诺系统利用纳米腔中的强场局域化来控制其中一个激光镜的特性。这种配置意味着可以通过调制镜的损耗而不是改变有源介质的磁化率来实现开关状态。重要的是,调制可以在纳米腔上局部实现,无需调整整个激光系统。这导致了低能耗的快速触发器动作。反馈法诺激光器可以体现在紧凑的微观结构中,从而为集成全光计算和片上信号处理提供了一种很有前景的方法。

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