English

Fully gapped pairing state in spin-triplet superconductor UTe$_2$

Superconductivity 2024-03-04 v1

Abstract

Spin-triplet superconductors provide an ideal platform for realizing topological superconductivity with emergent Majorana quasiparticles. The promising candidate is the recently discovered superconductor UTe2 _2, but the symmetry of the superconducting order parameter remains highly controversial. Here we determine the superconducting gap structure by the thermal conductivity of ultra-clean UTe2 _2 single crystals. We find that the aa axis thermal conductivity divided by temperature κ/T\kappa/T in zero-temperature limit is vanishingly small for both magnetic fields Ha\mathbf{H}||a and Hc\mathbf{H}||c axes up to H/Hc20.2H/H_{c2}\sim 0.2, demonstrating the absence of any types of nodes around aa axis contrary to the previous belief. The present results, combined with the reduction of the NMR Knight shift in the superconducting state, indicate that the superconducting order parameter belongs to the isotropic AuA_u representation with a fully gapped pairing state, analogous to the B phase of superfluid 3 ^3He. These findings reveal that UTe2 _2 is likely to be a long-sought three-dimensional (3D) strong topological superconductor characterized by a 3D winding number, hosting helical Majorana surface states on any crystal plane.

Keywords

Cite

@article{arxiv.2306.17549,
  title  = {Fully gapped pairing state in spin-triplet superconductor UTe$_2$},
  author = {S. Suetsugu and M. Shimomura and M. Kamimura and T. Asaba and H. Asaeda and Y. Kosuge and Y. Sekino and S. Ikemori and Y. Kasahara and Y. Kohsaka and M. Lee and Y. Yanase and H. Sakai and P. Opletal and Y. Tokiwa and Y. Haga and Y. Matsuda},
  journal= {arXiv preprint arXiv:2306.17549},
  year   = {2024}
}

Comments

10pages, 4 figures

R2 v1 2026-06-28T11:18:49.543Z