English

Symmetry protected vortex bound state in superfluid $^3$He B-phase

Superconductivity 2015-04-14 v1

Abstract

The superfluid 3^3He formed by spin-triplet pp-wave Cooper pairs is a typical topological superfluid. In the superfluid 3^3He B-phase, several kinds of vortices classified by spatial symmetries P1P_1, P2P_2, and P3P_3 are produced, where P1P_1 is inversion symmetry, P2P_2 is magnetic reflection symmetry, and P3P_3 is magnetic π\pi-rotation symmetry. We have calculated the vortex bound states by the Bogoliubov-de Gennes theory and the quasiclassical Eilenberger theory, and also clarified symmetry protection of the low energy excitations by the spatial symmetries. On the symmetry protection, P3P_3 symmetry plays a key role which gives two-fold degenerate Majorana zero modes. Then, the bound states in the most symmetric oo vortex with P1P_1, P2P_2, and P3P_3 symmetries and in ww vortex with P3P_3 symmetry have the symmetry protected degenerate Majorana zero modes. On the other hand, zero energy modes in vv vortex, which is believed to be realized in the actual B-phase, are not protected, and in consequence become gapped by breaking axial symmetry. The excitation gap may have been observed as the variation of critical velocity. We have also suggested an experimental setup to create oo vortex with Majorana zero modes by a confinement and a magnetic field.

Keywords

Cite

@article{arxiv.1503.03136,
  title  = {Symmetry protected vortex bound state in superfluid $^3$He B-phase},
  author = {Yasumasa Tsutsumi and Takuto Kawakami and Ken Shiozaki and Masatoshi Sato and Kazushige Machida},
  journal= {arXiv preprint arXiv:1503.03136},
  year   = {2015}
}

Comments

14 pages, 5 figures

R2 v1 2026-06-22T08:49:28.545Z