On the preparation and electronic properties of clean superconducting Nb(110) surfaces
arXiv:1906.07796 · doi:10.1103/PhysRevB.99.115437
Abstract
We have studied cleaning procedures of Nb(110) by verifying the surface quality with low-energy electron diffraction, Auger electron spectroscopy, and scanning tunneling microscopy and spectroscopy. Our results show that the formation of a surface-near impurity depletion zone is inhibited by the very high diffusivity of oxygen in the Nb host crystal which kicks in at annealing temperatures as low as a few hundred degree Celsius. Oxygen can be removed from the surface by heating the crystal up to C. Tunneling spectra measured on the clean Nb(110) surface exhibit a sharp conductance peak in the occupied states at an energy of about \,meV. Density functional theory calculations show that this peak is caused by a surface resonance band at the point of the Brillouin zonewhich provides a large density of states above the sample surface. The clean Nb(110) surface is superconducting with a gap width and a critical magnetic field strength in good agreement to the bulk value. In an external magnetic field we observe the Abrikosov lattice of flux quanta (vortices). Spatially resolved spectra show a zero-bias anomaly in the vortex core.
19 pages, 9 figures
References in corpus (2)
Cited by in corpus (25)
- Evidence of topological Shiba bands in artificial spin chains on superconductors
- Controlled length-dependent interaction of Majorana modes in Yu-Shiba-Rusinov chains
- Spin-orbit coupling induced splitting of Yu-Shiba-Rusinov states in antiferromagnetic dimers
- Atomic-scale spin-polarization maps using functionalized superconducting probes
- Two-dimensional Shiba lattices as possible platform for crystalline topological superconductivity
- Observation of tunable single-atom Yu-Shiba-Rusinov states
- Non-Majorana modes in diluted spin chains proximitized to a superconductor
- Long range and highly tunable interaction between local spins coupled to a superconducting condensate
- Proximity superconductivity in atom-by-atom crafted quantum dots
- Correlating Josephson supercurrents and Shiba states in quantum spins unconventionally coupled to superconductors
- Coexistence of Antiferromagnetism and Superconductivity in Mn/Nb(110)
- Coupling of Yu-Shiba-Rusinov states in 1D chains of Fe atoms on Nb(110)
- Density functional Bogoliubov-de Gennes analysis of superconducting Nb and Nb(110) surfaces
- Anisotropic vortices on superconducting Nb(110)
- Testing the topological nature of end states in antiferromagnetic atomic chains on superconductors
- Anomalous excitations of atomically crafted quantum magnets
- Boosting the STM's spatial and energy resolution with double-functionalized probe tips
- Systematic study of Mn atoms, artificial dimers and chains on superconducting Ta(110)
- Search for large topological gaps in atomic spin chains on proximitized superconducting heavy metal layers
- Proximity-Induced Superconductivity in Atomically Precise Nanographene
- Unravelling the atomic and electronic structure of nanocrystals on superconducting Nb(110): Impact of the oxygen monolayer
- The nontrivial effects of annealing on superconducting properties of Nb single crystals
- Optimizing proximitized magnetic topological insulator nanoribbons for Majorana bound states
- Vortex Pinning in Niobium covered by a thin polycrystalline Gold
- Detecting and Distinguishing Majorana Zero Modes with the Scanning Tunneling Microscope