Yu-Shiba-Rusinov states of impurities in a triangular lattice of NbSe with spin orbit coupling
arXiv:1707.03257 · doi:10.1103/PhysRevB.96.184425
Abstract
We study topography of the spin-polarized bound states of magnetic impurities embedded in triangular lattice of a superconducting host. Such states have been observed experimentally in 2H-NbSe crystal [G. C. M'enard et al., Nat.Phys. 11, 1013 (2015)] and revealed the oscillating particle-hole asymmetry extending to tens of nanometers. Using the Bogoliubov-de Gennes approach we explore the Yu-Shiba-Rusinov states in presence of spin-orbit interaction. We also study the bound states of double impurities for several relative positions in a triangular lattice.
9 pages, 11 figures
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- Topological superconductivity in Fibonacci quasicrystals
- Wave-function engineering on superconducting substrates: Chiral Yu-Shiba-Rusinov molecules
- Transient effects in double quantum dot sandwiched laterally between superconducting and metallic leads
- Charge-Order on the Triangular Lattice: A Mean-Field Study for the Lattice Fermionic Gas
- Yu-Shiba-Rusinov States and Ordering of Magnetic Impurities Near the Boundary of a Superconducting Nanowire
- Subgap dynamics of double quantum dot coupled between superconducting and normal leads
- Shiba states in systems with density of states singularities
- Anisotropy of Yu-Shiba-Rusinov states in NbSe
- Effects of electron-electron interactions in the Yu-Shiba-Rusinov lattice model
- Topological in-gap chiral edge states in superconducting Haldane model with spin-orbit coupling
- Fermi-Level Pinning of Yu-Shiba-Rusinov States in a Superconductor with Weakly Broken Spin-Rotational Invariance
- Scalable Effective Models for Superconducting Nanostructures: Applications to Double, Triple, and Quadruple Quantum Dots
- Transient triplet blockade in Andreev junction