We present an effective low-energy theory of electron-phonon coupling effects for clean cylindrical topological insulator nanowires. Acoustic phonons are modelled by isotropic elastic continuum theory with stress-free boundary conditions. We take into account the deformation potential coupling between phonons and helical surface Dirac fermions, and also include electron-electron interactions within the bosonization approach. For half-integer values of the magnetic flux $\Phi_B$ along the wire, the low-energy theory admits an exact solution since a topological protection mechanism then rules out phonon-induced $2k_F$-backscattering processes. We determine the zero-temperature phase diagram and identify a regime dominated by superconducting p...
How the surface state (SS) develops and how the spin transport in a curved cylindrical topological i...
We analyze the interaction at the surface of a three-dimensional (3D) topological insulator among 2D...
In this thesis we experimentally focused on quantum transport in graphene and topological insulators...
We study longitudinal magnetotransport in disorder-free cylindrical Weyl semimetal nanowires. Our th...
It has been shown in recent experiments that electronic transport through a gold monatomic nanowire ...
We analyze the interaction at the surface of a three-dimensional (3D) topological insulator among 2D...
Topological insulator nanowires with uniform cross section, combined with a magnetic flux, can host ...
In three-dimensional topological insulators (3D TI) nanowires, transport occurs via gapless surface ...
The following dissertation presents a study of the interaction between Dirac fermions and surface ph...
Surface waves in topological states of quantum matter exhibit unique protection from backscattering ...
Aharonov–Bohm conductance oscillations emerge as a result of gapless surface states in topological i...
Aharonov-Bohm conductance oscillations emerge as a result of gapless surface states in topological i...
The use of topological edge states for spintronic applications could be severely hampered by limited...
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...
How the surface state (SS) develops and how the spin transport in a curved cylindrical topological i...
We analyze the interaction at the surface of a three-dimensional (3D) topological insulator among 2D...
In this thesis we experimentally focused on quantum transport in graphene and topological insulators...
We study longitudinal magnetotransport in disorder-free cylindrical Weyl semimetal nanowires. Our th...
It has been shown in recent experiments that electronic transport through a gold monatomic nanowire ...
We analyze the interaction at the surface of a three-dimensional (3D) topological insulator among 2D...
Topological insulator nanowires with uniform cross section, combined with a magnetic flux, can host ...
In three-dimensional topological insulators (3D TI) nanowires, transport occurs via gapless surface ...
The following dissertation presents a study of the interaction between Dirac fermions and surface ph...
Surface waves in topological states of quantum matter exhibit unique protection from backscattering ...
Aharonov–Bohm conductance oscillations emerge as a result of gapless surface states in topological i...
Aharonov-Bohm conductance oscillations emerge as a result of gapless surface states in topological i...
The use of topological edge states for spintronic applications could be severely hampered by limited...
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...
How the surface state (SS) develops and how the spin transport in a curved cylindrical topological i...
We analyze the interaction at the surface of a three-dimensional (3D) topological insulator among 2D...
In this thesis we experimentally focused on quantum transport in graphene and topological insulators...