The non-trivial topology of three-dimensional topological insulators dictates the appearance of gapless Dirac surface states. Intriguingly, when made into a nanowire, quantum confinement leads to a peculiar gapped Dirac sub-band structure. This gap is useful for, e.g., future Majorana qubits based on TIs. Furthermore, these sub-bands can be manipulated by a magnetic flux and are an ideal platform for generating stable Majorana zero modes, playing a key role in topological quantum computing. However, direct evidence for the Dirac sub-bands in TI nanowires has not been reported so far. Here, using devices fabricated from thin bulk-insulating (Bi1-xSbx)(2)Te-3 nanowires we show that non-equidistant resistance peaks, observed upon gate-tuning t...
Topological insulator (TI) nanoribbons with proximity-induced superconductivity are a promising plat...
International audienceDisorder remains a key limitation in the search for robust signatures of topol...
After a century from the quantum description of nature, the scientific community has laid the basis ...
How the surface state (SS) develops and how the spin transport in a curved cylindrical topological i...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...
Three-dimensional topological insulator (3D TI) nanowires display remarkable magnetotransport proper...
Concepts for quantum computation technologies are based on the isolation of a quantum system that ha...
The dissertation reports a series of electron transport experiments on semiconductor nanowires towar...
The next generation of electronic devices based on 3D topological insulators will be developed from ...
Quasi-1D nanowires of topological insulators are candidate structures in superconductor hybrid archi...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
We analyze the confinement of electronic surface states in a model of a topological insulator nanowi...
A quantum computer can outperform classical computers for certain tasks. The general challenge to re...
Dirac fermions provide a prototypical description of topological insulators and their gapless bounda...
Topological insulators (TI) nanowires (NW) are an emerging class of structures, promising both novel...
Topological insulator (TI) nanoribbons with proximity-induced superconductivity are a promising plat...
International audienceDisorder remains a key limitation in the search for robust signatures of topol...
After a century from the quantum description of nature, the scientific community has laid the basis ...
How the surface state (SS) develops and how the spin transport in a curved cylindrical topological i...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...
Three-dimensional topological insulator (3D TI) nanowires display remarkable magnetotransport proper...
Concepts for quantum computation technologies are based on the isolation of a quantum system that ha...
The dissertation reports a series of electron transport experiments on semiconductor nanowires towar...
The next generation of electronic devices based on 3D topological insulators will be developed from ...
Quasi-1D nanowires of topological insulators are candidate structures in superconductor hybrid archi...
In this thesis, we investigate the quantum transport properties of disordered three dimensional topo...
We analyze the confinement of electronic surface states in a model of a topological insulator nanowi...
A quantum computer can outperform classical computers for certain tasks. The general challenge to re...
Dirac fermions provide a prototypical description of topological insulators and their gapless bounda...
Topological insulators (TI) nanowires (NW) are an emerging class of structures, promising both novel...
Topological insulator (TI) nanoribbons with proximity-induced superconductivity are a promising plat...
International audienceDisorder remains a key limitation in the search for robust signatures of topol...
After a century from the quantum description of nature, the scientific community has laid the basis ...