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Van Hove annihilation and Pomeranchuk instability on a kagome lattice

ORAL

Abstract

A nematic phase breaks the point-group symmetry of the crystal lattice and is known to emerge in correlated materials. Here we report the observation of an intra-unit-cell nematic order and associated Fermi surface deformation in the kagome metal ScV6Sn6. Using scanning tunnelling microscopy and scanning tunnelling spectroscopy, we reveal a stripe-like nematic order breaking the crystal rotational symmetry within the kagome lattice itself. Moreover, we identify a set of Van Hove singularities adhering to the kagome-layer electrons, which appear along one direction of the Brillouin zone and are annihilated along other high-symmetry directions, revealing rotational symmetry breaking. Via detailed spectroscopic maps, we further observe an elliptical deformation of the Fermi surface, which provides direct evidence for an electronically mediated nematic order. Our work not only bridges the gap between electronic nematicity and kagome physics but also sheds light on the potential mechanism for realizing symmetry-broken phases in correlated electron systems.

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Presenters

  • Yuxiao Jiang

    Princeton University

Authors

  • Yuxiao Jiang

    Princeton University

  • Sen Shao

    Nanyang Technological University

  • Wei Xia

    ShanghaiTech University

  • Julian P Ingham

    Boston University

  • Shafayat Hossain

    Princeton University

  • Guoqing Chang

    Nanyang Technological University

  • Yanfeng Guo

    ShanghaiTech University, Shanghai tech university

  • Ronny Thomale

    Julius-Maximilians University of Wuerzburg

  • Titus M Neupert

    University of Zürich, University of Zurich, University of zurich

  • Zahid M Hasan

    Princeton University