English

The Vortex Phase Diagram of Rotating Superfluid $^3$He-B

Superconductivity 2020-02-11 v2

Abstract

We present the first theoretical calculation of the pressure-temperature-field phase diagram for the vortex phases of rotating superfluid 3^3He-B. Based on a strong-coupling extension of the Ginzburg-Landau theory that accounts for the relative stability of the bulk A and B phases of 3^3He at all pressures, we report calculations for the internal structure and free energies of distinct broken-symmetry vortices in rotating superfluid 3^3He-B. Theoretical results for the equilibrium vortex phase diagram in zero field and an external field of H=284\mboxGH=284\,\mbox{G} parallel to the rotation axis, HΩ\vec{H}\parallel\vec{\Omega}, are reported, as well as the supercooling transition line, Tv(p,H)T^{*}_ {v} (p,H). In zero field the vortex phases of 3^3He-B are separated by a first-order phase transition line Tv(p)T_ {v} (p) that terminates on the bulk critical line Tc(p)T_{c}(p) at a triple point. The low-pressure, low-temperature phase is characterized by an array of singly-quantized vortices that spontaneously breaks axial rotation symmetry, exhibits anisotropic vortex currents and an axial current anomaly (D-core phase). The high-pressure, high-temperature phase is characterized by vortices with both bulk A phase and β\beta phase in their cores (A-core phase). We show that this phase is metastable and supercools down to a minimum temperature, Tv(p,H)T^{*}_ {v} (p,H), below which it is globally unstable to an array of D-core vortices. For H60\mboxGH\gtrsim 60\,\mbox{G} external magnetic fields aligned along the axis of rotation increase the region of stability of the A-core phase of rotating 3^3He-B, opening a window of stability down to low pressures. These results are compared with the experimentally reported phase transitions in rotating 3^3He-B.

Keywords

Cite

@article{arxiv.1908.04190,
  title  = {The Vortex Phase Diagram of Rotating Superfluid $^3$He-B},
  author = {Robert C. Regan and J. J. Wiman and J. A. Sauls},
  journal= {arXiv preprint arXiv:1908.04190},
  year   = {2020}
}

Comments

14 pages, 11 figures