The discovery of three-dimensional (3D) topological insulators opens a gateway to generate unusual phases and particles made of the helical surface electrons, proposing new applications using unusual spin nature. Demonstration of the helical electron transport is a crucial step to both physics and device applications of topological insulators. Topological insulator nanowires, of which spin-textured surface electrons form 1D band manipulated by enclosed magnetic flux, offer a unique nanoscale platform to realize quantum transport of spin-momentum locking nature. Here, we report an observation of a topologically protected 1D mode of surface electrons in topological insulator nanowires existing at only two values of half magnetic quantum flux ...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
Spin-momentum helical locking is one of the most important properties of the nontrivial topological ...
We present evidence of topological surface states in β-Ag2Te through first-principles calculations, ...
Nanowires with helical surface states represent key prerequisites for observing and exploiting phase...
In three-dimensional topological insulators (3D TI) nanowires, transport occurs via gapless surface ...
Nanowires with helical surface states represent key prerequisites for observing and exploiting phase...
The motion of an electron and its spin are generally not coupled. However in a one-dimensional mater...
Topology in condensed matter physics manifests itself in the emergence of edge or surface states pro...
The next generation of electronic devices based on 3D topological insulators will be developed from ...
Three-dimensional topological insulator (3D TI) nanowires display remarkable magnetotransport proper...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
Three-dimensional topological insulators form a new material class which is predicted to hold Majora...
The prediction and the experimental discovery of topological insulators has set the stage for a nove...
In recent years, the research field of topological insulators (TIs) has grown extremely fast due to ...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
Spin-momentum helical locking is one of the most important properties of the nontrivial topological ...
We present evidence of topological surface states in β-Ag2Te through first-principles calculations, ...
Nanowires with helical surface states represent key prerequisites for observing and exploiting phase...
In three-dimensional topological insulators (3D TI) nanowires, transport occurs via gapless surface ...
Nanowires with helical surface states represent key prerequisites for observing and exploiting phase...
The motion of an electron and its spin are generally not coupled. However in a one-dimensional mater...
Topology in condensed matter physics manifests itself in the emergence of edge or surface states pro...
The next generation of electronic devices based on 3D topological insulators will be developed from ...
Three-dimensional topological insulator (3D TI) nanowires display remarkable magnetotransport proper...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.Cataloged from PD...
Three-dimensional topological insulators form a new material class which is predicted to hold Majora...
The prediction and the experimental discovery of topological insulators has set the stage for a nove...
In recent years, the research field of topological insulators (TIs) has grown extremely fast due to ...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
Spin-momentum helical locking is one of the most important properties of the nontrivial topological ...
We present evidence of topological surface states in β-Ag2Te through first-principles calculations, ...