Dynamical Coulomb Blockade as a Signature of the Sign-Reversing Cooper Pairing Potential
arXiv:2303.17365 · doi:10.1103/PhysRevB.110.014514
Abstract
Coulomb blockade occurs for electrons tunneling into nanoislands because of the quantization of charge. Here, using spectroscopy measurements of nonmagnetic islands grown on a high-Tc superconductor [one-unit-cell (1-UC) FeSe], we systematically investigate the dynamical Coulomb blockade (DCB), which is found to reflect the Cooper pairing potential in the superconducting substrate. The tunneling spectra are acquired on single-crystalline Pb nanoislands and show a clear suppression of the tunnel current around zero bias-voltage with a gap-like structure. The observed spectral gaps can be attributed to DCB based on our comprehensive investigations, including experiments with finely varying island sizes and calculations of the spectra using the P(E) theory of DCB. Our detailed analysis suggests that the observed DCB can be related to the sign-reversing pairing potential in the 1-UC FeSe substrate below the islands. The sign reversal is furthermore revealed in a transition of the superconducting gap of FeSe from a U- to a V-like lineshape as the distance between neighboring doublet islands is decreased, indicating the presence of a nodal-like gap as expected for a sign-reversing superconductor. Our configuration of nonmagnetic nanoislands on a high-Tc superconductor for spectroscopy measurements may serve as a local, spatially sensitive, and tunable probe for detecting the sign-reversing order parameter in unconventional superconductors.
References in corpus (13)
- Ironing out the details of unconventional superconductivity
- Iron based high transition temperature superconductors
- Monolayer FeSe on SrTiO
- On the Remarkable Superconductivity of FeSe and its Close Cousins
- High-temperature superconductivity in one-unit-cell FeSe films
- Imaging gate-tunable Tomonaga-Luttinger liquids in 1H-MoSe mirror twin boundaries
- Competing effects of surface phonon softening and quantum size effects on the superconducting properties of nanostructured Pb
- Triangular Spin-Orbit-Coupled Lattice with Strong Coulomb Correlations: Sn Atoms on a SiC(0001) Substrate
- Evidence for d-wave superconductivity in single layer FeSe/SrTiO3 probed by quasiparticle scattering off step edges
- Superconducting parity effect across the Anderson limit
- Spectroscopic Visualization of a Robust Electronic Response of Semiconducting Nanowires to Deposition of Superconducting Islands
- Orbital-Selective High-Temperature Cooper Pairing Developed in the Two-Dimensional Limit
- Equally Spaced Quantum States in van der Waals Epitaxy-Grown Nanoislands