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从无节点云到涡旋、再到二维极化激元凝聚体中的灰色环形孤子和对称破缺态。

From nodeless clouds and vortices to gray ring solitons and symmetry-broken states in two-dimensional polariton condensates.

机构信息

Departamento de Física/CFP, Faculdade de Ciências, Universidade do Porto, R Campo Alegre, 687-4169-007 Porto, Portugal.

出版信息

J Phys Condens Matter. 2014 Apr 16;26(15):155801. doi: 10.1088/0953-8984/26/15/155801. Epub 2014 Mar 27.

Abstract

We consider the existence, stability and dynamics of the nodeless state and fundamental nonlinear excitations, such as vortices, for a quasi-two-dimensional polariton condensate in the presence of pumping and nonlinear damping. We find a series of interesting features that can be directly contrasted to the case of the typically energy-conserving ultracold alkali-atom Bose-Einstein condensates (BECs). For sizeable parameter ranges, in line with earlier findings, the nodeless state becomes unstable towards the formation of stable nonlinear single or multi-vortex excitations. The potential instability of the single vortex is also examined and is found to possess similar characteristics to those of the nodeless cloud. We also report that, contrary to what is known, e.g., for the atomic BEC case, stable stationary gray ring solitons (that can be thought of as radial forms of Nozaki-Bekki holes) can be found for polariton condensates in suitable parametric regimes. In other regimes, however, these may also suffer symmetry-breaking instabilities. The dynamical, pattern-forming implications of the above instabilities are explored through direct numerical simulations and, in turn, give rise to waveforms with triangular or quadrupolar symmetry.

摘要

我们研究了在泵浦和非线性阻尼存在的情况下,准二维极化激元凝聚体中无节点态和基本非线性激发(如涡旋)的存在、稳定性和动力学。我们发现了一系列有趣的特征,这些特征可以与典型的能量守恒的超冷碱原子玻色-爱因斯坦凝聚体(BEC)的情况直接对比。在相当大的参数范围内,与早期的发现一致,无节点态朝着稳定的非线性单涡或多涡旋激发的形成变得不稳定。我们还研究了单涡旋的潜在不稳定性,并发现它具有与无节点云相似的特征。我们还报告说,与已知的情况相反,例如,对于原子 BEC 情况,在合适的参数条件下,可以找到极化激元凝聚体中的稳定的静态灰色环形孤子(可以被认为是 Nozaki-Bekki 空洞的径向形式)。然而,在其他条件下,它们也可能遭受对称性破坏不稳定性。通过直接数值模拟探索了上述不稳定性的动力学、图案形成的影响,进而产生具有三角或四极对称性的波形。

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