Metastability of Quantum Droplet Clusters
Abstract
We show that metastable ring-shaped clusters can be constructed from two-dimensional quantum droplets in systems described by the Gross-Pitaevskii equations augmented with Lee-Huang-Yang quantum corrections. The clusters exhibit dynamical behavior ranging from contraction to rotation with simultaneous periodic pulsations, or expansion, depending on the initial radius of the necklace pattern and phase shift between adjacent quantum droplets. We show that, using an energy-minimization analysis, one can predict equilibrium values of the cluster radius that correspond to rotation without radial pulsations. In such a regime, the clusters evolve as metastable states, withstanding abrupt variations in the underlying scattering lengths and keeping their azimuthal symmetry in the course of evolution, even in the presence of considerable perturbations.
- Publication:
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Physical Review Letters
- Pub Date:
- May 2019
- DOI:
- arXiv:
- arXiv:1904.10050
- Bibcode:
- 2019PhRvL.122s3902K
- Keywords:
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- Condensed Matter - Quantum Gases;
- Condensed Matter - Mesoscale and Nanoscale Physics;
- Nonlinear Sciences - Pattern Formation and Solitons
- E-Print:
- 5 pages, 6 figures, to appear in Physical Review Letters