Heterosymmetric states of rotating quantum droplets under confinement

Fuente: arXiv
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Main Authors: Nikolaou, S., Kavoulakis, G. M., Ogren, M.
Format: Preprint
Published: 2026
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author Nikolaou, S.
Kavoulakis, G. M.
Ogren, M.
author_facet Nikolaou, S.
Kavoulakis, G. M.
Ogren, M.
contents We investigate the rotational response of a confined, two-dimensional quantum droplet, which emerges in an attractive binary Bose mixture that is stabilized against collapse by beyond-mean-field effects. We consider both a harmonic and an anharmonic form for the external confining potential. We go beyond the widely employed ``phase-locked" single-order-parameter model, maintaining two separate order parameters for the two components, and calculating the lowest-energy state for various values of the angular momentum. For a population-balanced quantum droplet and sufficiently tight confinement, we find that near certain half-integer values of the angular momentum the droplet is excited in a ``heterosymmetric" manner, with the two components carrying different vorticities. This mode is naturally missed by the single-order-parameter model. We additionally investigate the effects of a small population imbalance in the droplet. Apart from an energy increase associated with the population difference, the imbalance also lifts the double degeneracy of the heterosymmetric states, which characterizes the $\mathbb{Z}_2$-symmetric balanced droplet. The heterosymmetric mode is found to be favored by the energy term which captures the beyond-mean-field effects in the mixture.
format Preprint
id arxiv_https___arxiv_org_abs_2603_21395
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Heterosymmetric states of rotating quantum droplets under confinement
Nikolaou, S.
Kavoulakis, G. M.
Ogren, M.
Quantum Gases
Atomic Physics
Quantum Physics
We investigate the rotational response of a confined, two-dimensional quantum droplet, which emerges in an attractive binary Bose mixture that is stabilized against collapse by beyond-mean-field effects. We consider both a harmonic and an anharmonic form for the external confining potential. We go beyond the widely employed ``phase-locked" single-order-parameter model, maintaining two separate order parameters for the two components, and calculating the lowest-energy state for various values of the angular momentum. For a population-balanced quantum droplet and sufficiently tight confinement, we find that near certain half-integer values of the angular momentum the droplet is excited in a ``heterosymmetric" manner, with the two components carrying different vorticities. This mode is naturally missed by the single-order-parameter model. We additionally investigate the effects of a small population imbalance in the droplet. Apart from an energy increase associated with the population difference, the imbalance also lifts the double degeneracy of the heterosymmetric states, which characterizes the $\mathbb{Z}_2$-symmetric balanced droplet. The heterosymmetric mode is found to be favored by the energy term which captures the beyond-mean-field effects in the mixture.
title Heterosymmetric states of rotating quantum droplets under confinement
topic Quantum Gases
Atomic Physics
Quantum Physics
url https://arxiv.org/abs/2603.21395