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Bulk and surface photocurrents in topological chiral crystals

ORAL

Abstract

The nonlinear optical responses from topological semimetals are crucial in both understanding the fundamental properties of quantum materials and designing next-generation light sensors or solar cells. Using the ideal topological chiral semimetal RhSi as a representative, we, for the first time, theoretically determine the quantized photocurrent from bulk multi-fold chiral fermions. We further propose a new surface-only photocurrent response from their chiral Fermi arcs. We quantitatively compute the photogalvanic currents from bulk "Weyl" cone and surface Fermi arcs. We demonstrate that Fermi arc photogalvanic currents can be perpendicular to the bulk injection currents regardless of the choice of materials surface. We then generalize this finding to other cubic chiral space groups and predict material candidates. Our theory reveals a powerful notion where common crystalline symmetry can be used to completely disentangle bulk and surface optical responses in many conducting material families.

Publication: PRL 119, 206401 (2017)<br>PRL 124, 166404 (2020) <br>Nature Reviews Materials 6, 784-803 (2021)

Presenters

  • Guoqing Chang

    Nanyang Technological University, Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University

Authors

  • Guoqing Chang

    Nanyang Technological University, Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University

  • Zahid M Hasan

    Princeton University, Laboratory for Topological Quantum Matter and Advanced Spectroscopy (B7), Department of Physics, Princeton University, Princeton, New Jersey, USA.

  • Arun Bansil

    Northeastern University, Department of Physics, Northeastern University, USA

  • Hsin Lin

    Academia Sinica, Institute of Physics, Academia Sinica, Taiwan

  • Suyang Xu

    Harvard University

  • Daniel S Sanchez

    Princeton University

  • Ilya Belopolski

    RIKEN, Princeton University

  • Jiaxin Yin

    Princeton University, Department of Physics, Princeton University