Competition of vortex core structures in superfluid He-B
arXiv:2406.13649 · doi:10.1103/PhysRevResearch.6.043112
Abstract
Among vortex structures identified so far in superfluid He-B, the most common are the A-phase-core vortex and the double-core vortex. According to earlier numerical calculations, the double-core vortex is energetically favored nearly everywhere in the - phase diagram. Nevertheless, in experiments the A-phase-core vortex has been observed down to temperatures of at high pressures. We use the Ginzburg-Landau formalism to calculate the energies of the two vortex structures in the experimentally relevant magnetic field as well as the energy barrier for the transition between the two structures. Assigning vanishing barrier as the boundary of the metastability region of the A-phase-core vortex, we reproduce the experimentally measured vortex phase diagram and provide an explanation for the reappearance of the double-core vortex near the critical temperature at low pressures: The difference in Zeeman energy between the two vortex structures becomes relatively more important close to , and the A-phase-core vortex becomes unstable. In contrast to the equilibrium vortex structures, we suggest that the vortex nucleation process favors the A-phase-core vortex over the double-core vortex. Our approach can be used to analyze competition between different vortex structures in other unconventional superfluids and superconductors.
16 pages, 6 figures; revised after referee suggestions
References in corpus (10)
- Multiple Superconducting Phases and Unusual Enhancement of the Upper Critical Field in UTe2
- Violation of the London Law and Onsager-Feynman quantization in multicomponent superconductors
- Twisted vortex state
- I-V characteristics of the vortex state in MgB2 thin films
- Topological phase transitions in small mesoscopic chiral p-wave superconductors
- Anomalous vortex dynamics in spin-triplet superconductor UTe
- Coreless vortices as direct signature of chiral -wave superconductivity
- A-B transition in superfluid He and cosmological phase transitions
- Effects of a magnetic field on vortex states in superfluid He-B
- Intertwined Orders and Electronic Structure in Superconducting Vortex Halos