Sensitivity of superconducting states to the impurity location in layered materials
arXiv:2201.05045 · doi:10.1103/PhysRevB.106.014515
Abstract
The family of multi-layered superconductors derived from the doped topological insulator BiSe has been found to be unusually robust against non-magnetic disorder. Recent experimental studies have highlighted the fact that the location of impurities could play a critical role for this puzzling robustness. Here we investigate the effects of four different types of impurities, on-site, interstitial, intercalated and polar, on the superconducting critical temperature. We find that different components of the scattering potential are active depending on the impurity configuration and choice of orbitals for the effective low-energy description of the normal state. For the specific case of BiSe-based superconductors, we find that only the symmetric share of impurity configurations contribute to scattering, such that polar impurities are completely inactive. We also find that a more dominant mass-imbalance term in the normal-state Hamiltonian can make the superconducting state more robust to intercalated impurities, in contrast to the case of on-site or interstitial impurities.
References in corpus (16)
- Evidence of nodes in the order parameter of the superconducting doped topological insulator NbBiSe via penetration depth measurements
- Impurity Effects in Sign Reversing Fully-Gapped Superconductors: Analysis of FeAs Superconductors
- A new superconductor derived from topological insulator heterostructure
- Anapole superconductivity from -symmetric mixed-parity interband pairing
- Anomalous suppression of the superfluid density in the CuxBi2Se3 superconductor upon progressive Cu intercalation
- Electron irradiation effects on superconductivity in PdTe: an application of a generalized Anderson theorem
- Non-fragile superconductivity with nodes in the superconducting topological insulator CuxBi2Se3: Zeeman orbital field and non-magnetic impurities
- Nonunitary Superconductivity in Complex Quantum Materials
- Origin of the anomalous Hall effect in two-band chiral superconductors
- General theory of robustness against disorder in multi-band superconductors
- $\require{mhchem}$Misfit phase $\ce{(BiSe)_{$1.10$}NbSe2}$ as the origin of superconductivity in nobium-doped bismuth selenide
- The effect of interorbital scattering on superconductivity in doped Dirac materials
- Crystal structure and distortion of superconducting CuBiSe
- The Vertical Position of Sr Dopants in the SrBiSe Superconductor
- Nodal gaps from local interactions in SrRuO
- Superconductivity in Cu-doped BiSe with potential disorder