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通过四波混频实现空间磁化率调制和可控单向反射放大

Spatial susceptibility modulation and controlled unidirectional reflection amplification via four-wave mixing.

作者信息

Geng Yue, Pei Xiaoshan, Li Guanrong, Lin Xinyu, Zhang Hanxiao, Yan Dong, Yang Hong

出版信息

Opt Express. 2023 Nov 6;31(23):38228-38239. doi: 10.1364/OE.499738.

Abstract

Control of unidirectional light propagation is of paramount importantance to optical signal processing and optical communication. Especially, the amplified optical signal can isolate noise well that may provide more applications. In this work, we propose a dynamically modulated regime to realize unidirectional reflection amplification in a short and dense uniform atomic medium, and all atoms are driven into four-level double-Λ type by two coupling fields with linearly varied intensities along x direction and two weak probe fields. Based on four-wave mixing resonance and the broken spatial symmetry, the complete nonreciprocal reflection (unidirectional reflection) can be amplified with reflectivity more than 2.0, even to 6.0. In addition, the width, height, and position of the unidirectional reflection bands can be tunable. Thus, our regime is feasible and may inspire further applications in all-optical networks that require controllable unidirectional light amplification.

摘要

控制单向光传播对于光信号处理和光通信至关重要。特别是,放大后的光信号能够很好地隔离噪声,这可能会带来更多应用。在这项工作中,我们提出了一种动态调制机制,以在短而密集的均匀原子介质中实现单向反射放大,所有原子由两个沿x方向强度线性变化的耦合场和两个弱探测场驱动到四能级双Λ型。基于四波混频共振和空间对称性的破坏,完全非互易反射(单向反射)可以被放大,反射率超过2.0,甚至达到6.0。此外,单向反射带的宽度、高度和位置是可调的。因此,我们的机制是可行的,可能会激发在需要可控单向光放大的全光网络中的进一步应用。

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