Nanowires with helical surface states represent key prerequisites for observing and exploiting phase-coherent topological conductance phenomena, such as spin-momentum locked quantum transport or topological superconductivity. We demonstrate in a joint experimental and theoretical study that gated nanowires fabricated from high-mobility strained HgTe, known as a bulk topological insulator, indeed preserve the topological nature of the surface states, that moreover extend phase-coherently across the entire wire geometry. The phase-coherence lengths are enhanced up to 5 mu m when tuning the wires into the bulk gap, so as to single out topological transport. The nanowires exhibit distinct conductance oscillations, both as a function of the flux...
We study the electronic states of hexagonal core multishell semiconductor nanowires, including the e...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
Topological insulator nanowires with uniform cross section, combined with a magnetic flux, can host ...
Nanowires with helical surface states represent key prerequisites for observing and exploiting phase...
Nanowires with helical surface states represent key prerequisites for observing and exploiting phase...
In this thesis, a number of transport effects in topological insulator nanostructures are investigat...
In recent years, the research field of topological insulators (TIs) has grown extremely fast due to ...
Magnetotransport through cylindrical topological insulator (TI) nanowires is governed by the interpl...
In three-dimensional topological insulators (3D TI) nanowires, transport occurs via gapless surface ...
We show that shaped topological insulator (TI) nanowires, i.e. such that their cross-section radius ...
The discovery of three-dimensional (3D) topological insulators opens a gateway to generate unusual p...
We report an observation of a topologically protected transport of surface carriers in a quasiballis...
We study the electronic and transport properties of a topological insulator nanowire including selec...
We report theoretical calculations of electronic and transport properties mediated by topological he...
We study the electronic states of hexagonal core multishell semiconductor nanowires, including the e...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
Topological insulator nanowires with uniform cross section, combined with a magnetic flux, can host ...
Nanowires with helical surface states represent key prerequisites for observing and exploiting phase...
Nanowires with helical surface states represent key prerequisites for observing and exploiting phase...
In this thesis, a number of transport effects in topological insulator nanostructures are investigat...
In recent years, the research field of topological insulators (TIs) has grown extremely fast due to ...
Magnetotransport through cylindrical topological insulator (TI) nanowires is governed by the interpl...
In three-dimensional topological insulators (3D TI) nanowires, transport occurs via gapless surface ...
We show that shaped topological insulator (TI) nanowires, i.e. such that their cross-section radius ...
The discovery of three-dimensional (3D) topological insulators opens a gateway to generate unusual p...
We report an observation of a topologically protected transport of surface carriers in a quasiballis...
We study the electronic and transport properties of a topological insulator nanowire including selec...
We report theoretical calculations of electronic and transport properties mediated by topological he...
We study the electronic states of hexagonal core multishell semiconductor nanowires, including the e...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
Topological insulator nanowires with uniform cross section, combined with a magnetic flux, can host ...