Abstract
Abstract
Magnetic impurities in superconductors host Yu-Shiba-Rusinov (YSR) bound states, whereas weak superconducting junctions sustain subharmonic charge transport through multiple Andreev reflections (MAR). We explore these phenomena using a molecular-scale junction created by placing a nickelocene (Nc) molecule atop an Fe adatom on Pb(111) and approaching it with a superconducting scanning-tunneling-microscope tip. Gradually increasing the junction transparency drives the system from conventional YSR spectroscopy in the tunneling regime to resonant MAR transport and, ultimately, to a Josephson-coupled state. The resulting spectra exhibit shifted MAR thresholds, asymmetric line shapes, and odd-even features that identify YSR-assisted MAR. A combined theoretical treatment of junction transparency and exchange coupling accounts for these observations, while density-functional calculations show that the Nc-Fe complex forms an antiferromagnetic ground state with a residual Fe spin-$$\frac{1}{2}$$ generating the YSR resonances. Our results demonstrate that the parameters governing YSR and MAR processes can be continuously tuned within a single superconducting nanojunction. Magnetic impurities and weak links create distinct subgap excitations in superconductors. Here, the authors tune a nickelocene/Fe junction on Pb to show that combined Yu-Shiba-Rusinov (YSR) and multiple-Andreev-reflection (MAR) processes explain shifted subgap features and the onset of Josephson transport.
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@article{Mier2026Shiba,
title = {Yu-Shiba-Rusinov-assisted Andreev transport in a molecular junction between superconductors},
author = {Cristina Mier and Alex Fétida and Roberto Robles and Parmenio Boronat and Divya Jyoti and Nicolás Lorente and L. Limot and Deung-Jang Choi},
journal = {Nature Communications},
year = {2026},
doi = {10.1038/s41467-026-76478-4},
url = {https://doi.org/10.1038/s41467-026-76478-4}
}
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