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在传输亮-暗矢量孤子的光学介质中,由交叉相位调制诱导产生的光孤子模式。

Photosoliton modes induced by cross-phase modulation in optical media conveying bright-dark vector solitons.

作者信息

Chenui E Aban, Dikandé Alain M

出版信息

Opt Express. 2022 Mar 28;30(7):10999-11013. doi: 10.1364/OE.447413.

Abstract

It is well known that high-intensity optical fields with soliton features, both bright and dark solitons, can trap and reshape photon fields of lower intensities into optical solitons by means of cross-phase modulation in optical materials with Kerr nonlinearity. In general the induced photon fields are not arbitrarily given, they are well-defined quantum states |ℓ, m〉 of a discrete spectrum which we refer to as quantum photosoliton modes. In this study we propose a scheme for the generation of quantum photosoliton states, by considering linear photon field propagating coupled to a vector high-intensity optical field with coexisting mutually transparent bright and dark solitons. It is found that features of the probe spectrum, specifically the nature, number and degeneracy of the associate quantum modes, depend on the strengths of couplings of the linear photon field to the bright and dark soliton components of the vector-soliton pump. The competition created by these simultaneous couplings leads to a rich variety of photosoliton modes, including modes that are replica of the soliton pump or translation modes of the two components of the vector-soliton pump. For the context where the optical pump consists of a single bright and a single dark soliton structures, it is found that photosoliton modes are all multiple degenerate in addition to being replica of some other modes. However, when the optical pump is a periodic multiplex of bright-dark solitons, photosoliton quantum states retain their identities (i.e. become non degenerate) but some of them are still either replica or translation modes of components of the optical pump.

摘要

众所周知,具有孤子特征的高强度光场,包括亮孤子和暗孤子,能够通过克尔非线性光学材料中的交叉相位调制,将较低强度的光子场捕获并重塑为光学孤子。一般来说,诱导产生的光子场并非任意给定,它们是离散谱中定义明确的量子态|ℓ, m〉,我们将其称为量子光孤子模式。在本研究中,我们提出了一种生成量子光孤子态的方案,该方案考虑了与具有共存的相互透明的亮孤子和暗孤子的矢量高强度光场耦合传播的线性光子场。研究发现,探测光谱的特征,特别是相关量子模式的性质、数量和简并性,取决于线性光子场与矢量孤子泵浦的亮孤子和暗孤子分量的耦合强度。这些同时发生的耦合所产生的竞争导致了丰富多样的光孤子模式,包括与孤子泵浦相同的模式或矢量孤子泵浦两个分量的平移模式。对于光泵浦由单个亮孤子和单个暗孤子结构组成的情况,发现光孤子模式除了是其他一些模式的复制品外,都是多重简并的。然而,当光泵浦是亮暗孤子的周期性复用形式时,光孤子量子态保持其特性(即变为非简并),但其中一些仍然是光泵浦分量的复制品或平移模式。

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