Optical Hall conductivity in ordinary and graphene quantum Hall systems.
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Summary
It is revealed from numerical study that the optical Hall conductivity sigma(xy)(omega) has a characteristic feature even in the ac ( approximately THz) regime in that the Hall plateaus are retained both in the ordinary two-dimensional electron gas and in graphene in the quantum Hall regime, although the plateau height is no longer quantized in ac.
- Type
- article
- Published
- 2009-04-16
- Cited by
- 91
- References
- 4
- Access
- Open access
- OpenAlex
- https://openalex.org/W1513268998
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1654714
Keywords
Quantum Hall effect, Condensed matter physics, Graphene, Physics, Quantum spin Hall effect
References
Cited by
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- Flow diagram of the longitudinal and Hall conductivities in ac regime in the disordered graphene quantum Hall system
- All Optical Measurement Proposed for the Photovoltaic Hall Effect
- Quantum Faraday and Kerr rotations in graphene
- Optical Hall effect in the integer quantum Hall regime.
- Optical Hall conductivity of systems with gapped spectral nodes
- ANALYSIS OF FARADAY ROTATION AND MAGNETO-OPTICAL TRANSMISSION IN MONOLAYER GRAPHENE
- Faraday effect in graphene enclosed in an optical cavity and the equation of motion method for the study of magneto-optical transport in solids
- Terahertz magneto-optics of quantum hall effect and anomalous hall effect
- Theory for optical Hall conductivity in the trilayer graphene in the quantum Hall regime
- Dynamical scaling analysis of the optical Hall conductivity in the graphene quantum Hall system with various types of disorder
- Optical Faraday rotation with graphene
- Tunable Magneto-Optical Kerr Effect in Gated Monolayer Graphene in Terahertz Region
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