Dirac and Weyl Semimetals: Theory III
ORAL · P44 ·
Presentations
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Electromagnetic signatures of the chiral anomaly in Weyl semimetals
ORAL
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Authors
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Edwin Barnes
- Department of Physics, Virginia Tech
- Virginia Tech
- Department of Physics, Virginia Tech, Blacksburg, Virginia 24061, USA
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Jean Heremans
- Virginia Tech
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Djordje Minic
- Virginia Tech
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Anomalous Hall currents induced by time-varying magnetic fields in a Weyl metal phase
ORAL
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Authors
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Iksu Jang
- POSTECH
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Jae-Ho Han
- POSTECH
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Ki-Seok Kim
- POSTECH
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Linear Magnetochiral effect in Weyl Semimetals
ORAL
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Authors
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Alberto Cortijo
- CSIC - Madrid
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Kinetic equation approach to chiral anomaly driven magnetoconductivity of Weyl semimetals
ORAL
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Authors
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Xaver Neumeyer
- University of North Dakota
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Vladimir Zyuzin
- Texas A&M University
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Quantum Kinetic Theory of Magnetotransport in Weyl Metals
ORAL
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Authors
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Akihiko Sekine
- Department of Physics, The University of Texas at Austin
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Dimitrie Culcer
- School of Physics, The University of New South Wales
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Allan MacDonald
- Department of Physics, The University of Texas at Austin
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$\mathbb Z_2$ and Chiral Anomalies in Topological Dirac Semimetals
ORAL
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Authors
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Anton Burkov
- University of Waterloo
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Yong Baek Kim
- University of Toronto
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Intrinsic Magnetoconductivity of Non-magnetic Metals
ORAL
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Authors
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Yang Gao
- Carnegie Mellon University
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Shengyuan Yang
- Research Laboratory for Quantum Materials, Singapore University of Technology and Design
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Qian Niu
- UT Austin
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Electromagnetic response of a Weyl semimetal with coexisting density waves
ORAL
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Authors
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Zachary Raines
- Univ of Maryland-College Park
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Victor Galitski
- Department of Physics, University of Maryland, College Park, MD 20742
- Univ of Maryland-College Park
- Joint Quantum Institute and Condensed Matter Theory Center, University of Maryland, College Park
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Theory of transport property of density wave phases in three-dimensional metals and semimetals under high magnetic field
ORAL
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Authors
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Xiao-Tian Zhang
- International center for Quantum Materials, Peking University
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Ryuichi Shindou
- International center for Quantum Materials, Peking University
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Accurate Tight-Binding Hamiltonians : Topological Insulators
ORAL
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Authors
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Marcio Costa
- Universidade Federal do ABC
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Roberto Bechara
- Universidade Federal Fluminense
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Marco Nardelli
- Department of Physics and Department of Chemistry, University of North Texas
- North Texas University
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Adalberto Fazzio
- Universidade Federal do ABC
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Topological states and quantized current in helical organic molecules
ORAL
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Authors
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Ai-Min Guo
- Harbin Institute of Technology
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Qing-Feng Sun
- Peking University
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A Case Study Of Organic Dirac Materials --
ORAL
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Authors
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Benjamin Commeau
- University of Connecticut, Storrs, CT
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Matthias Geilhufe
- Nordita, Center for Quantum Materials, KTH Royal Institute of Technology and Stockholm University, Stockholm, Sweden
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GAYANATH FERNANDO
- University of Connecticut, Storrs, CT
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Alexander Balatsky
- Nordita, KTH Royal Institute of Technology, Stockholm University and Los Alamos National Laboratory
- Nordita, KTH Royal Institute of Technology and Stockholm University; Institute for Materials Science, Los Alamos National Laboratory, USA
- Nordita, Center for Quantum Materials, KTH Royal Institute of Technology and Stockholm University, Stockholm, Sweden
- Nordita, KTH Royal Institute of Technology and Stockholm University; Institute for Materials Science, Los Alamos National Laboratory
- Los Alamos National Laboratory, NORDITA
- Institute for Materials Science, Los Alamos National Laboratory, USA; Nordita, KTH Royal Institute of Technology and Stockholm University, Sweden
- Nordita, Center for Quantum Materials, KTH Royal Institute of Technology and Stockholm University, Roslagstullsbacken 23, SE-106 91 Stockholm, Sweden
- Nordita, Center for Quantum Materials, Stockholm University and KTH, Stockholm and Institute for Materials Science, LANL, Los Alamos, USA
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Quantized Zak Phase and Topological Surface Charge originating from the Nodal Line
ORAL
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Authors
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Motoaki Hirayama
- Dept. of Physics, Tokyo Tech.; TIES, Tokyo Tech.
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Ryo Okugawa
- Dept. of Physics, Tokyo Tech.
- Tokyo Institute of Technology
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Shuichi Murakami
- Department of Physics, Tokyo Institute of Technology
- Tokyo Inst of Tech - Tokyo
- Dept. of Physics, Tokyo Tech.; TIES, Tokyo Tech.
- Dept. of Phys. Tokyo Tech., TIES. Tokyo Tech
- Tokyo Institute of Technology
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Bulk-boundary correspondence from the inter-cellular Zak phase
ORAL
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Authors
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Jun-Won Rhim
- Max Planck Inst
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Jan Behrends
- Max Planck Inst
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Jens H. Bardarson
- Max Planck Inst
- Max Planck Institute for the Physics of Complex Systems, Dresden 01187, Germany
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Conductivity in nodal line semimetals with charged impurities
ORAL
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Authors
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Brian Skinner
- MIT
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Sergey Syzranov
- University of Maryland
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