International audienceWe show a new method to differentiate conductivities from the surface states and the coexisting bulk states in topological insulators using a four-probe transport spectroscopy in a multiprobe scanning tunneling microscopy system. We derive a scaling relation of measured resistance with respect to varying interprobe spacing for two interconnected conduction channels to allow quantitative determination of conductivities from both channels. Using this method, we demonstrate the separation of 2D and 3D conduction in topological insulators by comparing the conductance scaling of Bi2Se3, Bi2Te2Se, and Sb-doped Bi2Se3 against a pure 2D conductance of graphene on SiC substrate. We also quantitatively show the effect of surface...
Topological insulators are a new phase of matter in condensed matter physics that fundamentally diff...
In this thesis, I will describe our electrical transport approach in studying three-dimensional topo...
This dissertation seeks to understand the novel physical properties of a new class of materials call...
Electron transport in topological insulators usually involves both topologically protected surface s...
Topological insulator (TI) materials, with their exotic electronic properties, cause a growing inter...
Within this thesis, both position-dependent charge transport measurements with a multi-tip scanning ...
This dissertation focuses on the probing of physics governing the electronic and structural properti...
We conducted mobility spectrum analysis on a high quality three dimensional topological insulator fi...
Topological insulators are characterized by a fully gapped bulk and gapless surface states. They hav...
We report a method to control contributions of bulk and surface states in the topological insulator ...
The topologically protected conducting state is expected to exist on the entire surface of threedime...
Two Dirac fermion systems recently realized in solid state physics are believed promising for novel ...
The present thesis deals with electrical transport measurements performed with a four-tip scanning t...
The topologically protected conducting state is expected to exist on the entire surface of three-dim...
Electronic transport experiments involving the topologically protected states found at the surface o...
Topological insulators are a new phase of matter in condensed matter physics that fundamentally diff...
In this thesis, I will describe our electrical transport approach in studying three-dimensional topo...
This dissertation seeks to understand the novel physical properties of a new class of materials call...
Electron transport in topological insulators usually involves both topologically protected surface s...
Topological insulator (TI) materials, with their exotic electronic properties, cause a growing inter...
Within this thesis, both position-dependent charge transport measurements with a multi-tip scanning ...
This dissertation focuses on the probing of physics governing the electronic and structural properti...
We conducted mobility spectrum analysis on a high quality three dimensional topological insulator fi...
Topological insulators are characterized by a fully gapped bulk and gapless surface states. They hav...
We report a method to control contributions of bulk and surface states in the topological insulator ...
The topologically protected conducting state is expected to exist on the entire surface of threedime...
Two Dirac fermion systems recently realized in solid state physics are believed promising for novel ...
The present thesis deals with electrical transport measurements performed with a four-tip scanning t...
The topologically protected conducting state is expected to exist on the entire surface of three-dim...
Electronic transport experiments involving the topologically protected states found at the surface o...
Topological insulators are a new phase of matter in condensed matter physics that fundamentally diff...
In this thesis, I will describe our electrical transport approach in studying three-dimensional topo...
This dissertation seeks to understand the novel physical properties of a new class of materials call...