Graphene II: Electronic Properties and QHE
FOCUS · B25 ·
Presentations
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Quantum Hall effect of massless Dirac fermions in a vanishing magnetic field
ORAL
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Authors
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Kentaro Nomura
- Tohoku University
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Shinsei Ryu
- The University of California, Berkeley
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Mikito Koshino
- Tokyo Institute of Technology, Japan
- Tokyo Institute of Technology
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Christopher Mudry
- Paul Scherrer Institute
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Akira Furusaki
- RIKEN
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New quantum Hall ferromagnetic states in graphene bilayers
ORAL
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Authors
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Rene Cote
- Universite de Sherbrooke
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Yafis Barlas
- NHMFL, Tallahassee, FL
- NHMFL (Florida State University)
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Jules Lambert
- Universite de Sherbrooke
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Allan H. MacDonald
- University of Texas at Austin
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Kentaro Nomura
- Tohoku University
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Novel electronic and transport properties of graphene superlattices
COFFEE_KLATCH · Invited
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Authors
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Cheol-Hwan Park
- University of California at Berkeley and Lawrence Berkeley National Laboratory
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Quantum Hall wavefunction for Dirac fermions in high magnetic field
ORAL
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Authors
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Feng Cai
- Boston College
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Ziqiang Wang
- Boston College
- Department of Physics, Boston College
- Boston college
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ABSTRACT WITHDRAWN
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Edge states in Graphene: from gapped flat band to gapless chiral modes
ORAL
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Authors
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Shengyuan Yang
- The University of Texas at Austin
- UT Austin Dept of Physics
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Wang Yao
- The University of Hong Kong
- The University of Texas at Austin, The University of Hong Kong
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Qian Niu
- The university of Texas at Austin
- The University of Texas at Austin
- UT Austin Dept of Physics
- Department of Physics, The University of Texas, Austin, Texas
- University of Texas at Austin
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Excitonic supersolid in quantum Hall graphene bilayers
ORAL
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Authors
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Yogesh Joglekar
- Indiana University- Purdue University Indianapolis (IUPUI)
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Chang-hua Zhang
- Kansas State University
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Transport on quantum antidot made of 4-terminal graphene ribbons
ORAL
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Authors
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Andrea Latge
- UFF-Instituto de Fisica
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Carlos Ritter
- UFF-Instituto de Fisica
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Pedro Orellana
- UCN-Departamento de Fisica
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Monica Pacheco
- UTSM-Departamento de Fisica
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Gate-field effect in multilayer graphenes
ORAL
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Authors
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Mikito Koshino
- Tokyo Institute of Technology, Japan
- Tokyo Institute of Technology
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Chemical Doping and Electron-Hole Conduction Asymmetry in Graphene Devices
ORAL
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Authors
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Roksana Golizadeh Mojarad
- Purdue University
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Damon Farmer
- IBM
- IBM T.J. Watson Research Center
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Vasili Perebeinos
- IBM T.J. Watson Research Center
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Yu-Ming Lin
- IBM T.J. Watson Research Center
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George S. Tulevski
- IBM T.J. Watson Research Center
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James C. Tsang
- IBM T.J. Watson Research Center
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Ali Afzali
- IBM T.J. Watson Research Center
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Phaedon Avouris
- IBM T.J. Watson Research Center
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Sub-lithographic Patterning of Extended Arrays of Graphene Nanostructures
ORAL
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Authors
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Ke Li
- Department of Physics, The Ohio State University
- 1
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Wei Han
- University of California, Riverside
- 2
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Sarah C. Parks
- 1
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Wenzhong Bao
- University of California Riverside
- 2
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John Ciraldo
- Department of Physics, The Ohio State University
- 2
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Chun Ning Lau
- University of California Riverside
- University of California, Riverside
- 2
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Roland Kawakami
- University of California Riverside
- 2
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Ezekiel Johnston-Halperin
- Department of Physics, The Ohio State University
- Dept. of Physics, The Ohio State University
- 1 (1 Department of Physics, The Ohio State University; 2 Department of Physics and Astronomy, University of California, Riverside)
- The Ohio State University
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Quantum Hall Edge Transport Across Graphene monolayer-bilayer junctions
ORAL
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Authors
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Yue Zhao
- Graduate Student, Physics Department Columbia University
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Mikito Koshino
- Research Associate, Tokyo Institute of Technology
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Philip Kim
- Columbia University
- Physics, Columbia University
- Depts. of Physics and Applied Physics, Columbia University
- Physics Department, Columbia University
- Associate Professor, Physics Department, Columbia University
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Dissipation and Criticality in the Lowest Landau Level of Graphene
ORAL
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Authors
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Pallab Goswami
- Rice University
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Xun Jia
- University of California at Los Angeles
- UCLA
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Sudip Chakravarty
- University of California at Los Angeles
- UCLA
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