A recently developed theory for the problem of Andreev reflection between a normal metal (N) and a multiband superconductor (MBS) assumes that the incident wave from the normal metal is coherently transmitted through several bands inside the superconductor. Such splitting of the probability amplitude into several channels is the analogue of a quantum waveguide. Thus, the appropriate matching conditions for the wave function at the N/MBS interface are derived from an extension of quantum waveguide theory. Interference effects between the transmitted waves inside the superconductor manifest themselves in the conductance. We provide results for a FeAs superconductor, in the framework of a recently proposed effective two-band model and two rece...
We present results for the local density of states in the superconducting (S) and normal metallic (N...
We analyse the charge transport between a one-dimensional weakly interacting electron gas and a supe...
Time-reversal invariant superconductors having nodes of vanishing excitation gap support zero-energy...
The problem of Andreev reflection between a normal metal and a multiband superconductor is addressed...
A theory of Andreev conductance is formulated for junctions involving normal metals (N) and multiban...
We formulate a minimal model of point contact Andreev reflection spectroscopy of a normal-metal/mult...
We present the derivation of boundary conditions on a wave function at the normal metal/superconduct...
We formulate a quantum waveguide theory of the Josephson effect in multiband superconductors, with s...
The Andreev reflection between a normal metal (N) and a heavy-fermion superconductor (HFS) is studie...
Based on a simple matrix method, we investigate the effects of Fermi vector mismatch and elastic bar...
The mechanism of multiple Andreev reflection (MAR) is a microscopic theory for electron transport in...
We investigate the electron tunneling through a normal-metal-quantum-dot-superconductor (N-QD-S) sys...
Crossed Andreev reflections and cotunneling occur between two neighbouring superconductor- normal m...
In this thesis we present theoretical investigations of the effects of Andreev bound states on the c...
We introduce a model for a multiband topological superconductor with two orbitals per lattice site, ...
We present results for the local density of states in the superconducting (S) and normal metallic (N...
We analyse the charge transport between a one-dimensional weakly interacting electron gas and a supe...
Time-reversal invariant superconductors having nodes of vanishing excitation gap support zero-energy...
The problem of Andreev reflection between a normal metal and a multiband superconductor is addressed...
A theory of Andreev conductance is formulated for junctions involving normal metals (N) and multiban...
We formulate a minimal model of point contact Andreev reflection spectroscopy of a normal-metal/mult...
We present the derivation of boundary conditions on a wave function at the normal metal/superconduct...
We formulate a quantum waveguide theory of the Josephson effect in multiband superconductors, with s...
The Andreev reflection between a normal metal (N) and a heavy-fermion superconductor (HFS) is studie...
Based on a simple matrix method, we investigate the effects of Fermi vector mismatch and elastic bar...
The mechanism of multiple Andreev reflection (MAR) is a microscopic theory for electron transport in...
We investigate the electron tunneling through a normal-metal-quantum-dot-superconductor (N-QD-S) sys...
Crossed Andreev reflections and cotunneling occur between two neighbouring superconductor- normal m...
In this thesis we present theoretical investigations of the effects of Andreev bound states on the c...
We introduce a model for a multiband topological superconductor with two orbitals per lattice site, ...
We present results for the local density of states in the superconducting (S) and normal metallic (N...
We analyse the charge transport between a one-dimensional weakly interacting electron gas and a supe...
Time-reversal invariant superconductors having nodes of vanishing excitation gap support zero-energy...