Interactions and Dynamics of One-Dimensional Droplets, Bubbles and Kinks

IF 1.9 Q3 PHYSICS, CONDENSED MATTER Condensed Matter Pub Date : 2023-06-12 DOI:10.3390/condmat8030067
Garyfallia C. Katsimiga, S. I. Mistakidis, B. Malomed, D. Frantzeskakis, R. Carretero-González, P. Kevrekidis
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引用次数: 2

Abstract

We explore the dynamics and interactions of multiple bright droplets and bubbles, as well as the interactions of kinks with droplets and with antikinks, in the extended one-dimensional Gross–Pitaevskii model including the Lee–Huang–Yang correction. Existence regions are identified for the one-dimensional droplets and bubbles in terms of their chemical potential, verifying the stability of the droplets and exposing the instability of the bubbles. The limiting case of the droplet family is a stable kink. The interactions between droplets demonstrate in-phase (out-of-phase) attraction (repulsion), with the so-called Manton’s method explicating the observed dynamical response, and mixed behavior for intermediate values of the phase shift. Droplets bearing different chemical potentials experience mass-exchange phenomena. Individual bubbles exhibit core expansion and mutual attraction prior to their destabilization. Droplets interacting with kinks are absorbed by them, a process accompanied by the emission of dispersive shock waves and gray solitons. Kink–antikink interactions are repulsive, generating counter-propagating shock waves. Our findings reveal dynamical features of droplets and kinks that can be detected in current experiments.
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一维液滴、气泡和扭结的相互作用和动力学
在包含Lee-Huang-Yang修正的一维广义Gross-Pitaevskii模型中,我们研究了多个亮液滴和亮气泡的动力学和相互作用,以及扭结与液滴和反扭结的相互作用。根据其化学势确定了一维液滴和气泡的存在区域,验证了液滴的稳定性,暴露了气泡的不稳定性。液滴族的极限情况是稳定的扭结。液滴之间的相互作用表现出相内(相外)吸引(斥力),用所谓的曼顿方法解释观察到的动力学响应,以及相移中间值的混合行为。具有不同化学势的液滴经历了质量交换现象。单个气泡在失稳之前表现出核心膨胀和相互吸引。与扭结相互作用的液滴被扭结吸收,这一过程伴随着色散冲击波和灰孤子的发射。扭结-反扭结相互作用是排斥性的,产生反向传播的冲击波。我们的发现揭示了当前实验中可以检测到的液滴和扭结的动力学特征。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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