Integer quantum Hall conductivity and longitudinal conductivity in silicene under the electric field and magnetic field
arXiv:1805.10656 · doi:10.1140/epjb/e2018-90343-x
Abstract
We investigate the integer Hall conductivity and longitudinal conductivity of silicene under the magnetic field, electric field, and exchange field in this letter. We focus not only on the low-temperature and -function impurities (i.e., independent of the scattering momentum) case, which only exist the intra-Landau level transition, but also on the case of inter-Landau level transition which also with the non-elastic scattering. The resulting longitudinal conductivity is very different with the intra-Landau level one at low-temperature. The exprssions of the Hall conductivity, longitudinal conductivity, valley contributed Hall conductivity, and the spin or valley Hall conductivity, are deduced in this letter. We also compute the dynamical polarization under the magnetic field which is a important quantity and has many exciting and novel properties, and with the screened scattering due to the charged impurities. The polarization function here is also related to the Landau level index under the magnetic field, and shows step-like feature rather than the logarithmically divergenas which appears for the zero-magnetic field case, and it's also naturally related to the conductivity in silicene. The generalized Laguerre polynomial is used in both the longitudinal conductivity and dynamical polarization function under magnetic field.
References in corpus (14)
- Unconventional Integer Quantum Hall effect in graphene
- A self-consistent theory for graphene transport
- Valley-Polarized Metals and Quantum Anomalous Hall Effect in Silicene
- Valley polarized quantum Hall effect and topological insulator phase transitions in silicene
- Dynamical conductivity of AA-stacked bilayer graphene
- Spin-orbit coupling in a graphene bilayer and in graphite
- Dynamical polarization of monolayer graphene in a magnetic field
- Topological Phase Transitions and Quantum Hall Effect in the Graphene Family
- Geometrical structure and the electron transport properties of monolayer and bilayer silicene near the semimetal-insulator transition point in tight-binding model
- Tight-binding model and ab initio calculation of silicene with strong spin-orbit coupling in low-energy limit
- Electronic transport and the related anomalous effects in silicene-like hexagonal lattice
- Interband and intraband transition, dynamical polarization and screening of the monolayer and bilayer silicene in low-energy tight-binding model
- Josephson effect in silicene-based SNS Josephson junction: Andreev reflection and free energy
- Integer quantum Hall effect and topological phase transitions in silicene
Cited by in corpus (10)
- Electronic transport and the related anomalous effects in silicene-like hexagonal lattice
- Many-electron effect to the dynamical polarization of silicene-like two-dimension Dirac materials
- Anomalous Rabi oscillation and related dynamical polarizations under the off-resonance circularly polarized light
- Electronic properties and polaronic dynamics of semi-Dirac system within ladder approximation
- Josephson effect in silicene-based SNS Josephson junction: Andreev reflection and free energy
- Electronic properties of the parabolic Dirac system
- Dynamical polarization, plasmon model, and the Friedel oscillation of the screened potential in doped Dirac and Weyl system
- Electronic transport and dynamical polarization in bilayer silicene-like system
- Dynamical polarization and the optical response of silicene and related materials
- Fundamental Properties of Metal-Adsorbed Silicene: A DFT Study