Electron-hole coherence in core-shell nanowires with partial proximity induced superconductivity
arXiv:2206.04830 · doi:10.1103/PhysRevB.107.035423
Abstract
By solving the Bogoliubov-de Gennes Hamiltonian, the electron-hole coherence within a partially proximitized n-doped semiconductor shell of a core-shell nanowire heterostructure is investigated numerically and compared with the Andreev reflection interpretation of proximity induced superconductivity. Partial proximitization is considered to quantify the effects of a reduced coherence length. Three cases of partial proximitization of the shell are explored: radial, angular and longitudinal. For the radial case, it is found that the boundary conditions impose localization probability maxima in the center of the shell in spite of off-center radial proximitization. The induced superconductivity gap is calculated as a function of the ratio between the proximitized shell thickness and the total shell thickness. In the angular case, the lowest energy state of a hexagonal wire with a single proximitized side is found to display the essence of Andreev reflection, only by lengthwise summation of the localization probability. In the longitudinal case, a clear correspondence with Andreev reflection is seen in the localization probability as a function of length along a half-proximitized wire. The effect of an external magnetic field oriented along the wire is explored.
9 pages, 8 figures, added discussion and references
References in corpus (24)
- Coherent manipulation of an Andreev spin qubit
- Triplet proximity effect in FSF trilayers
- Odd Triplet Pairing in clean Superconductor/Ferromagnet heterostructures
- Induced Triplet Pairing in clean s-wave Superconductor/Ferromagnet layered structures
- A perspective on semiconductor-based superconducting qubits
- Majorana Fermions in Ge/Si Hole Nanowires
- Dynamic Acoustic Control of Individual Optically Active Quantum Dot-like Emission Centers in Heterostructure Nanowires
- Majorana fermions in ferromagnetic chains on the surface of bulk spin-orbit coupled -wave superconductors
- Magnetic states in prismatic core multishell nanowires
- Quantum limit of the triplet proximity effect in half-metal - superconductor junctions
- Finite-size effects in a nanowire strongly coupled to a thin superconducting shell
- Unintentional high density p-type modulation doping of a GaAs/AlAs core-multi-shell nanowire
- Boosting spintronics with superconductivity
- Proximity effects and triplet correlations in Ferromagnet/Ferromagnet/Superconductor nanostructures
- Spectroscopy of the superconducting proximity effect in nanowires using integrated quantum dots
- Electron localization and optical absorption of polygonal quantum rings
- Hybrid superconductor-semiconductor systems for quantum technology
- Andreev reflection of fractional quantum Hall quasiparticles
- Full proximity treatment of topological superconductors in Josephson-junction architectures
- Andreev Modes from Phase Winding in a Full-shell Nanowire-based Transmon
- Coulomb Blockade from the Shell of an InP-InAs Core-Shell Nanowire with a Triangular Cross Section
- Proximity induced pseudogap in mesoscopic superconductor/normal-metal bilayers
- Non-contact Andreev reflection as a direct probe of superconductivity on the atomic scale
- Majorana Zero Modes in Ferromagnetic Wires without Spin-Orbit Coupling