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April 21, 20260 citations

Yin-Yang vortex on UTe2 (011) surface.

RYRuotong YinYLYuanji LiZDZengyi Du

Key Points

  • The research aims to investigate the superconducting state and vortex behavior in UTe2.
  • Utilized scanning tunneling microscopy/spectroscopy under perpendicular magnetic fields.
  • Analyzed local density of states on the UTe2 (011) surface.
  • Conducted theoretical analysis on vortex-induced surface state interactions.
  • Observed distinct Yin-Yang vortex structures with contrasting conductance features.
  • Yang part shows a sharp zero-energy peak, while Yin part has a superconducting gap with coherence peaks.
  • Evidence supports the presence of spin-triplet pairing in UTe2.

Abstract

UTe2 is a candidate spin-triplet superconductor, yet its superconducting state remains debated. Using scanning tunneling microscopy/spectroscopy, we observe a novel magnetic vortex with distinct dark-bright contrast in local density of states on UTe2 (011) surface under perpendicular magnetic fields, resembling the Yin-Yang diagram in Taoism. Each vortex carries a quantized magnetic flux, and the boundary between the two parts aligns with crystallographic a-axis. The vortex states exhibit intriguing behaviors -- the Yang part exhibits a sharp zero-energy conductance peak, whereas the Yin part shows a superconducting gap with pronounced coherence peaks, sharper than those without fields. Theoretical analysis attributes this pattern to vortex-induced asymmetric suppression of topological surface states caused by the tilted Fermi surface, constraining possible d-vector orientations. Our findings constitute distinctive evidence for spin-triplet pairing in UTe2, and provide new avenues for exploring the interplay between surface states and vortex-bound states in topological superconductors.

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Cite This Study

Yin et al. (2026) studied this question.

synapsesocial.com/papers/69e7138bcb99343efc98cffchttps://doi.org/10.1038/s41467-026-72162-9
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