四维超流体中的曲面涡旋。I. 不等频双旋转

IF 2.9 2区 物理与天体物理 Q2 Physics and Astronomy Physical Review A Pub Date : 2024-07-25 DOI:10.1103/physreva.110.013325
Ben McCanna, Hannah M. Price
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引用次数: 0

摘要

超流体量子漩涡的研究一直以来都是一个重要的研究领域,之前的工作自然主要集中在二维和三维系统上,旋转分别稳定了点漩涡和线漩涡。有趣的是,对于假设的四维(4D)超流体来说,这种物理学可以推广到包括涡旋平面在内的四维(4D)超流体,从而产生更为丰富的现象学。在本文中,我们研究了倾斜和弯曲涡旋平面的可能性,这在低维度中没有直接的类似物。通过对四维格罗斯-皮塔耶夫斯基方程进行分析和数值研究,我们发现这种涡旋面可以通过不等旋转频率的双重旋转来稳定和有利。我们的研究提出了进一步研究这些涡旋面物理学的开放性问题,并建议未来将其有趣地扩展到等频率双旋转下的倾斜涡旋面以及更现实的四维模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Curved vortex surfaces in four-dimensional superfluids. I. Unequal-frequency double rotations
The study of superfluid quantum vortices has long been an important area of research, with previous work naturally focusing on two-dimensional and three-dimensional systems, where rotation stabilizes point vortices and line vortices respectively. Interestingly, this physics generalizes for a hypothetical four-dimensional (4D) superfluid to include vortex planes, which can have a much richer phenomenology. In this paper we study the possibility of skewed and curved vortex planes, which have no direct analog in lower dimensions. By analytically and numerically studying the 4D Gross-Pitaevskii equation, we show that such vortex surfaces can be stabilized and favored by double rotation with unequal rotation frequencies. Our work raises open questions for further research into the physics of these vortex surfaces and suggests interesting future extensions to tilted vortex surfaces under equal-frequency double rotation and to more realistic 4D models.
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来源期刊
Physical Review A
Physical Review A 物理-光学
CiteScore
5.40
自引率
24.10%
发文量
0
审稿时长
2.2 months
期刊介绍: Physical Review A (PRA) publishes important developments in the rapidly evolving areas of atomic, molecular, and optical (AMO) physics, quantum information, and related fundamental concepts. PRA covers atomic, molecular, and optical physics, foundations of quantum mechanics, and quantum information, including: -Fundamental concepts -Quantum information -Atomic and molecular structure and dynamics; high-precision measurement -Atomic and molecular collisions and interactions -Atomic and molecular processes in external fields, including interactions with strong fields and short pulses -Matter waves and collective properties of cold atoms and molecules -Quantum optics, physics of lasers, nonlinear optics, and classical optics
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