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非互易波通过扩展离散非线性薛定谔二聚体的传输。

Nonreciprocal wave transmission through an extended discrete nonlinear Schrödinger dimer.

机构信息

Department of Physics, University of Agriculture, Faisalabad 38040, Pakistan; Center for Theoretical Physics of Complex Systems, Institute for Basic Science (IBS), Daejeon 34051, Republic of Korea; and National Centre for Physics, Quaid-i-Azam University Campus, Islamabad, Pakistan.

出版信息

Phys Rev E. 2017 Nov;96(5-1):052218. doi: 10.1103/PhysRevE.96.052218. Epub 2017 Nov 21.

Abstract

We analyze a one-dimensional extended discrete nonlinear Schrödinger (DNLS) dimer model for nonreciprocal wave transmission. The extension corresponds to the addition of a nonlocal or intersite nonlinear response in addition to a purely cubic local (on-site) nonlinear response, which refines the purely cubic model and aligns to more realistic situations. We observe that a diodelike action persists in the extended case; however, the inclusion of nonlocal response tends to reduce the diode action. We show that this extension results in achieving the diode effect at lower incoming intensities as compared to the purely cubic case. We also report that a nearly perfect diode action is possible in the extended case for a higher level of asymmetry between on-site potentials than its cubic counterpart. Moreover, we vary different site-dependent parameters to probe for regimes of a better diode effect within this extended model. We also present the corresponding stability analysis for the exact stationary solutions to the extended DNLS equation, we discuss the bifurcation behavior in detail, and we explicitly give the regions of stability.

摘要

我们分析了一维扩展离散非线性薛定谔(DNLS)二聚体模型中非互易波传输。这种扩展对应于除了纯粹的立方局域(局域)非线性响应之外,还增加了非局域或相间非线性响应,从而细化了纯粹的立方模型,并与更现实的情况保持一致。我们观察到在扩展情况下存在类似二极管的作用;然而,非局域响应的包含往往会降低二极管的作用。我们表明,与纯粹的立方情况相比,这种扩展可以在较低的入射强度下实现二极管效应。我们还报告说,在扩展情况下,对于局域势之间的不对称性高于其立方对应物,几乎可以实现完美的二极管作用。此外,我们还改变了不同的依赖于位置的参数,以在这个扩展模型中探测更好的二极管效应的区域。我们还给出了扩展 DNLS 方程的精确定态解的相应稳定性分析,详细讨论了分岔行为,并明确给出了稳定区域。

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