Single-crystalline beta-Ag2Se nanostructures, a new class of 3D topological insulators (TIs), were synthesized using the chemical vapor transport method. The topological surface states were verified by measuring electronic transport properties including the weak anti localization effect, Aharonov Bohm oscillations, and Shubnikov de Haas oscillations. First-principles band calculations revealed that the band inversion in beta-Ag2Se is caused by strong spin orbit coupling and Ag Se bonding hybridization. These investigations provide evidence of nontrivial surface state about beta-Ag2Se TIs that have anisotropic Dirac cones.1186sciescopu
How the surface state (SS) develops and how the spin transport in a curved cylindrical topological i...
Bi2Se3 nanocrystals with various morphologies, including nanotower, nanoplate, nanoflake, nanobeam a...
In this thesis, a number of transport effects in topological insulator nanostructures are investigat...
We present evidence of topological surface states in ß-Ag 2Te through first-principles calculations,...
We present evidence of topological surface states in β-Ag2Te through first-principles calculations, ...
SnTe has attracted worldwide interest since its theoretical predication as topological crystalline i...
Since the discovery of topological insulators (TIs), there are considerable interests in demonstrati...
Topological insulators represent unusual phases of quantum matter with an insulating bulk gap and ga...
In this thesis we are going to demonstrate that β-Ag2Te is a new topological insulator system with h...
We report on low-temperature transport and electronic band structure of p-type Sb2Te3 nanowires, gro...
A recent theoretical study suggested that Ag<sub>2</sub>Te is a topological insulator with a highly ...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
Using angle-resolved photoemission spectroscopy, we report electronic structure for representative m...
Quantum transport measurement is an efficient tool to unveil properties of topological surface state...
Physical Review B - Condensed Matter and Materials Physics. Volume 85, Issue 23, 4 June 2012, Artic...
How the surface state (SS) develops and how the spin transport in a curved cylindrical topological i...
Bi2Se3 nanocrystals with various morphologies, including nanotower, nanoplate, nanoflake, nanobeam a...
In this thesis, a number of transport effects in topological insulator nanostructures are investigat...
We present evidence of topological surface states in ß-Ag 2Te through first-principles calculations,...
We present evidence of topological surface states in β-Ag2Te through first-principles calculations, ...
SnTe has attracted worldwide interest since its theoretical predication as topological crystalline i...
Since the discovery of topological insulators (TIs), there are considerable interests in demonstrati...
Topological insulators represent unusual phases of quantum matter with an insulating bulk gap and ga...
In this thesis we are going to demonstrate that β-Ag2Te is a new topological insulator system with h...
We report on low-temperature transport and electronic band structure of p-type Sb2Te3 nanowires, gro...
A recent theoretical study suggested that Ag<sub>2</sub>Te is a topological insulator with a highly ...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
Using angle-resolved photoemission spectroscopy, we report electronic structure for representative m...
Quantum transport measurement is an efficient tool to unveil properties of topological surface state...
Physical Review B - Condensed Matter and Materials Physics. Volume 85, Issue 23, 4 June 2012, Artic...
How the surface state (SS) develops and how the spin transport in a curved cylindrical topological i...
Bi2Se3 nanocrystals with various morphologies, including nanotower, nanoplate, nanoflake, nanobeam a...
In this thesis, a number of transport effects in topological insulator nanostructures are investigat...