Dirac and Weyl Semimetal: Theory

FOCUS · Y44 · ID: 1119793






Presentations

  • ORAL · Invited

    Publication: (1) Bo Fu, Huan-Wen Wang , and Shun-Qing Shen, Dirac Polarons and Resistivity Anomaly in ZrTe5 and HfTe5, PHYSICAL REVIEW LETTERS 125, 256601 (2020).
    (2)Bo Fu, Huan-Wen Wang , and Shun-Qing Shen, Quantum magnetotransport in massive Dirac materials, PHYSICAL REVIEW B 101, 125203 (2020).
    (3)Huan-Wen Wang, Bo Fu, and Shun-Qing Shen, Helical symmetry breaking and quantum anomaly in massive Dirac fermions PHYSICAL REVIEW B 104, L241111 (2021).

    Presenters

    • Bo Fu

      • University of Hong Kong

    Authors

    • Bo Fu

      • University of Hong Kong

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  • ORAL

    Publication: Manuscript in preparation

    Presenters

    • Stephan Lany

      • National Renewable Energy Laboratory

    Authors

    • Chase Brooks

      • University of Colorado, Boulder
    • Mark van Schilfgaarde

      • National Renewable Energy Laboratory
    • Dimitar Pashov

      • King's College London
    • Jocienne N Nelson

      • National Renewable Energy Laboratory
    • Dan S Dessau

      • University of Colorado, Boulder
    • Kirstin M Alberi

      • National Renewable Energy Laboratory
    • Stephan Lany

      • National Renewable Energy Laboratory

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  • ORAL

    Publication: Suraj Hegde, Andreas Haller, Chen Xu, Christophe De Beule, Thomas L. Schmidt and Tobias Meng (2022). Black hole mirages: electron lensing and Berry curvature effects in inhomogeneously tilted Weyl semimetals. Manuscript in preparation.

    Presenters

    • Andreas O Haller

      • University of Luxembourg

    Authors

    • Andreas O Haller

      • University of Luxembourg
    • Suraj Hedge

      • University of Dresden
    • Chen Xu

      • University of Dresden
    • Thomas L Schmidt

      • University of Luxembourg
      • University of Luxembourg Limpertsberg
    • Tobias Meng

      • University of Dresden
      • TU Dresden
    • Christophe De Beule

      • University of Luxembourg, University of Pennsylvania

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  • ORAL

    Publication: Phys. Rev. Lett. 128, 066402 (2022)

    Presenters

    • Aydin C Keser

      • University of New South Wales

    Authors

    • Aydin C Keser

      • University of New South Wales
    • Yuli B Lyanda-Geller

      • Purdue University
      • Department of Physics and Astronomy, Purdue University
    • Oleg P Sushkov

      • University of New South Wales
      • UNSW Sydney

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  • ORAL

    Publication: [1] Bonilla, D.; Muñoz, E. Electronic transport in Weyl semimetals with a uniform concentration of torsional dislocations. arXiv:2209.06989. https://doi.org/10.48550/arXiv.2209.06989

    [2] Bonilla, D.; Muñoz, E.; Soto-Garrido, R. Thermo-Magneto-Electric Transport through a Torsion Dislocation in a Type I Weyl 211
    Semimetal. Nanomaterials 2021, 11, 2972. https://doi.org/10.3390/nano11112972.

    [3] Muñoz, E.; Soto-Garrido, R. Thermoelectric transport in torsional strained Weyl semimetals. Journal of Applied Physics 2019, 207
    125, 082507. https://doi.org/10.1063/1.5051966.

    Presenters

    • Enrique Munoz

      • PontificiaUniversidad Catolica de Chile
      • Pontif Univ Catolica de Chile

    Authors

    • Enrique Munoz

      • PontificiaUniversidad Catolica de Chile
      • Pontif Univ Catolica de Chile
    • Daniel Bonilla

      • Pontificia Universidad Catolica de Chile

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  • ORAL

    Presenters

    • Malhar Kute

      • Stanford University

    Authors

    • Malhar Kute

      • Stanford University
    • Ge He

      • University College Cork
    • Leander Peis

      • Walther-Meissner-Institut
      • IFW Dresden; Walther-Meißner-Institut
    • Daniel Jost

      • Stanford University
    • Emily M Been

      • Stanford University
    • Brian Moritz

      • SLAC National Accelerator Laboratory
      • SLAC - Natl Accelerator Lab
    • Ramona Stumberger

      • Walther Meissner Institute
      • Walther Meissner Institut
    • Changjiang Yi

      • Max Planck Institute for Chemical Physics of Solids
    • Youguo Shi

      • Beijing National Laboratory for Condensed Matter Physics
      • Institute of Physics, Chinese Academy of Sciences
      • Institute of Physics, Chinese Academy of Sciences, Beijing, China
      • Chinese Academy of Sciences
    • Andreas Baum

      • Walther Meissner Institute
    • Rudi Hackl

      • Walther Meissner Institute
      • Walther Meissner Institut
    • Thomas Devereaux

      • Stanford Univ
      • Stanford University

    View abstract →