Vortex quantum droplets under competing nonlinearities

Guiqiu Chen, Hong-cheng Wang, Hai-ming Deng, B. Malomed
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Abstract

This concise review summarizes recent advancements in theoretical studies of vortex quantum droplets (VQDs) in matter-wave fields. These are robust self-trapped vortical states in two- and three-dimensional (2D and 3D) Bose-Einstein condensates (BECs) with intrinsic nonlinearity. Stability of VQDs is provided by additional nonlinearities resulting from quantum fluctuations around mean-field states, often referred to as the Lee-Huang-Yang (LHY) corrections. The basic models are presented, with emphasis on the interplay between the mean-field nonlinearity, LHY correction, and spatial dimension, that determines the structure and stability of VQDs. We embark by delineating fundamental properties of VQDs in the 3D free space, followed by consideration of their counterparts in the 2D setting. Additionally, we address stabilization of matter-wave VQDs by optical potentials. Finally, we summarize results for the study of VQDs in the single-component BEC of atoms carrying magnetic moments. In that case, the anisotropy of the long-range dipole-dipole interactions endows the VQDs with unique characteristics. The results produced by the theoretical studies in this area directly propose experiments for the observation of novel physical effects in the realm of quantum matter, and suggest potential applications to the design of new schemes for processing classical and quantum information.
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竞争非线性条件下的涡旋量子液滴
这篇简明综述总结了物质波场中涡旋量子滴(VQDs)理论研究的最新进展。它们是二维和三维(2D 和 3D )玻色-爱因斯坦凝聚体(BECs)中具有内在非线性的稳健自俘获涡旋态。平均场态周围的量子波动所产生的附加非线性(通常称为李-黄-杨(LHY)修正)提供了 VQD 的稳定性。本文介绍了基本模型,重点是决定 VQD 结构和稳定性的均场非线性、LHY 修正和空间维度之间的相互作用。我们首先描述了三维自由空间中 VQD 的基本特性,然后考虑了它们在二维环境中的对应特性。此外,我们还讨论了光势能对物质波 VQD 的稳定作用。最后,我们总结了在携带磁矩的原子的单组分 BEC 中研究 VQD 的结果。在这种情况下,长程偶极-偶极相互作用的各向异性赋予了 VQDs 独特的特性。这一领域的理论研究成果直接提出了在量子物质领域观测新物理效应的实验方案,并提出了在设计处理经典和量子信息的新方案方面的潜在应用。
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