Low energy excitation of surface states of a three-dimensional topological insulator (3DTI) can be described by Dirac fermions. By using a tight-binding model, the transport properties of the surface states in a uniform magnetic field are investigated. It is found that chiral surface states parallel to the magnetic field are responsible for the quantized Hall (QH) conductance (2n + 1)e(2)/h multiplied by the number of Dirac cones. Due to the two-dimensional nature of the surface states, the robustness of the QH conductance against impurity scattering is determined by the oddness and evenness of the Dirac cone number. An experimental setup for transport measurement is proposed.link_to_subscribed_fulltex
The surface states in three-dimensional (3D) topological insulators can be described by a two-dimens...
We developed a quantum field theoretical description for the surface states of three-dimensional top...
We study the transport properties of the Dirac fermions with a Fermi velocity v(F) on the surface ...
Low energy excitation of surface states of a three-dimensional topological insulator (3DTI) can be d...
Low energy excitation of surface states of a three-dimensional topological insulator (3DTI) can be d...
We study the surface local density of states and the transport properties of a three-dimensional (3D...
We study the surface local density of states and the transport properties of a three-dimensional (3D...
In this thesis, I will describe our electrical transport approach in studying three-dimensional topo...
In this thesis, I will describe our electrical transport approach in studying three-dimensional topo...
Electrical transport in three dimensional topological insulators (TIs) occurs through spin-momentum ...
We report magnetotransport studies on a gated strained HgTe device. This material is a three-dimensi...
Magnetic oscillations of Dirac surface states of topological insulators are typically expected to be...
Topological insulators(TIs) constitute a novel state of quantum matter which possesses non-trivial t...
Topological insulators are a newly discovered class of materials in which helical conducting modes e...
Three-dimensional (3D) topological insulators are newly discovered states of matter with robust meta...
The surface states in three-dimensional (3D) topological insulators can be described by a two-dimens...
We developed a quantum field theoretical description for the surface states of three-dimensional top...
We study the transport properties of the Dirac fermions with a Fermi velocity v(F) on the surface ...
Low energy excitation of surface states of a three-dimensional topological insulator (3DTI) can be d...
Low energy excitation of surface states of a three-dimensional topological insulator (3DTI) can be d...
We study the surface local density of states and the transport properties of a three-dimensional (3D...
We study the surface local density of states and the transport properties of a three-dimensional (3D...
In this thesis, I will describe our electrical transport approach in studying three-dimensional topo...
In this thesis, I will describe our electrical transport approach in studying three-dimensional topo...
Electrical transport in three dimensional topological insulators (TIs) occurs through spin-momentum ...
We report magnetotransport studies on a gated strained HgTe device. This material is a three-dimensi...
Magnetic oscillations of Dirac surface states of topological insulators are typically expected to be...
Topological insulators(TIs) constitute a novel state of quantum matter which possesses non-trivial t...
Topological insulators are a newly discovered class of materials in which helical conducting modes e...
Three-dimensional (3D) topological insulators are newly discovered states of matter with robust meta...
The surface states in three-dimensional (3D) topological insulators can be described by a two-dimens...
We developed a quantum field theoretical description for the surface states of three-dimensional top...
We study the transport properties of the Dirac fermions with a Fermi velocity v(F) on the surface ...