Pair Wavefunction Symmetry in UTe2 from Zero-Energy Surface State Visualization

ORAL

Abstract

Although nodal spin-triplet topological superconductivity appears probable in UTe2, its superconductive order-parameter Δk has not yet been established. If spin-triplet, it should have odd parity so that Δ-k = -Δk and, in addition, may break time-reversal symmetry. A distinctive identifier of such nodal spin-triplet superconductors is the appearance of an Andreev bound state (ABS) on surfaces parallel to a nodal axis, due to the presence of a topological surface band (TSB). Moreover, theory shows that specific ABS characteristics observable in tunneling to an s-wave superconductor distinguish between chiral and non-chiral . To search for such phenomena in UTe2 we employ s-wave superconductive scan-tip imaging to discover a powerful zero-energy ABS signature at the (0-11) crystal termination. Its imaging yields quasiparticle scattering interference signatures of two Δk nodes aligned with the crystal a-axis. Most critically, development of the zero-energy Andreev conductance peak into two finite-energy particle-hole symmetric conductance maxima as the tunnel barrier is reduced, signifies that UTe2 superconductivity is non-chiral. Overall, this combination of a zero-energy ABS, internodal scattering along the a-axis, and splitting of Andreev conductance maximum due to s-wave proximity, categorizes the superconductive Δk of a D2h-symmetry crystal as the odd-parity non-chiral B3u state.

* 1. The Moore Foundation’s EPiQS Initiative through Grant GBMF94572. The Royal Society under Award R648973. Science Foundation Ireland under Award SFI 17/RP/54454. The European Research Council (ERC) under Award DLV-7889325. The US Department of Energy, Office of Science, Basic Energy Sciences, Materials Sciences and Engineering Division, contract no. DE-AC02-05-CH11231 within the Quantum Materials Program (KC2202)

Presenters

  • Qiangqiang Gu

    Cornell University

Authors

  • Qiangqiang Gu

    Cornell University

  • Shuqiu Wang

    University of Bristol, University of Bristol, University of Oxford, Cornell University

  • Joseph Carroll

    University College Cork

  • Kuanysh Zhussupbekov

    Cornell University

  • Sheng Ran

    Washington University in St. Louis

  • Nicholas P Butch

    National Institute of Standards and Tech

  • Johnpierre Paglione

    University of Maryland, College Park, Maryland Quantum Materials Center, Department of Physics, University of Maryland, College Park, Maryland 20742, USA

  • Xiaolong Liu

    University of Notre Dame, Notre Dame University

  • Seamus S Davis

    University of Oxford, University of Oxford, Cornell University, University College Cork, Univeristy of Oxford

  • Dung-Hai Lee

    University of California, University of California, Berkeley