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首页> 外文期刊>Optics Letters >Kink-based mirrorless quasi-bistability in resonantly absorbing media
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Kink-based mirrorless quasi-bistability in resonantly absorbing media

机译:基于Kink的无遮光剂拟谐振态吸收介质

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摘要

Optical bistability is the basic nonlinear phenomenon mediating the control of light by light, being of ultimate demand for a plethora of applications in laser information technologies. The two most general designs are driven by the presence or absence of an external feedback, among which the mirrorless architecture seems promising, being free of bulky mirrors, resonant cavities, photonic crystals, etc. In this Letter, we propose a method to achieve optical quasibistability governed by the formation of specific nonlinear waveforms called "kinks." We show that a thin layer of the relatively dilute resonant medium specially designed to support kinks could serve as a platform for compact, ultrafast, low-power optical switching. This mechanism does not require high densities of resonant particles specific for the feedback-free devices driven by dipole-dipole interactions, and enhances the overall practical relevance of such devices for optical computing. (C) 2019 Optical Society of America
机译:光学双稳态是介导光线控制的基本非线性现象,是激光信息技术中对血清应用的最终需求。 两个最通用的设计是由外部反馈的存在或缺乏驱动的,其中无晶体系结构似乎有望,无笨重的镜子,谐振腔,光子晶体等。在这封信中,我们提出了一种实现光学的方法 通过称为“扭结”的特定非线性波形的形成来治理的Quasibistability。 我们表明,专门设计用于支撑扭结的相对稀释的谐振介质的薄层可以作为紧凑,超快,低功率光学切换的平台。 该机制不需要针对由偶极 - 偶极相互作用驱动的无反馈装置的谐振颗粒的高密度,并增强了这种用于光学计算的装置的整体实际相关性。 (c)2019年光学学会

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