Long range and highly tunable interaction between local spins coupled to a superconducting condensate
arXiv:2106.14932 · doi:10.1038/s41467-021-26802-x
Abstract
Interfacing magnetism with superconducting condensates is rapidly emerging as a viable route for the development of innovative quantum technologies. In this context, the development of rational design strategies to controllably tune the interaction between magnetic moments is crucial. In the metallic regime, the indirect interaction mediated by conduction electrons, the so-called RKKY coupling, has been proven to be remarkably fertile in creating and controlling magnetic phenomena. However, despite its potential, the possibility of using superconductivity to control the sign and the strength of indirect interactions between magnet moments remains largely unexplored. Here we address this problem at its ultimate limit, demonstrating the possibility of maximally tuning the interaction between local spins coupled through a superconducting condensate with atomic scale precision. By using Cr atoms coupled to superconducting Nb as a prototypical system, we use atomic manipulation techniques to precisely control the relative distance between local spins along different crystallographic directions while simultaneously sensing their coupling by scanning tunneling spectroscopy. Our results reveal the existence of highly anisotropic superconductor-mediated indirect couplings between the local spins, lasting up to very long distances, up to 12 times the lattice constant of Nb. Moreover, we demonstrate the possibility of controllably crossing a quantum phase transition by acting on the direction and interatomic distance between spins. The extremely high tunability provides novel opportunities for the realization of exotic phenomena such as topological superconductivity and the rational design of magneto-superconducting interfaces.
References in corpus (10)
- Observation of Majorana Fermions in Ferromagnetic Atomic Chains on a Superconductor
- Signature of magnetic-dependent gapless odd frequency states at superconductor/ferromagnet interfaces
- Orbital Picture of Yu-Shiba-Rusinov Multiplets
- Evidence of topological Shiba bands in artificial spin chains on superconductors
- Spin-orbit coupling induced splitting of Yu-Shiba-Rusinov states in antiferromagnetic dimers
- On the preparation and electronic properties of clean superconducting Nb(110) surfaces
- Impurities, Quantum Interference and Quantum Phase Transitions in s-wave superconductors
- Yu-Shiba-Rusinov qubit
- Quantum well states and amplified spin-dependent Friedel oscillations in thin films
- Quantum magnetism and topological superconductivity in Yu-Shiba-Rusinov chains
Cited by in corpus (23)
- Quantum spins and hybridization in artificially-constructed chains of magnetic adatoms on a superconductor
- Non-Majorana modes in diluted spin chains proximitized to a superconductor
- Yu-Shiba-Rusinov qubit
- Generalized atomic limit of a double quantum dot coupled to superconducting leads
- Quantum Yu-Shiba-Rusinov dimers
- Prevalence of trivial zero-energy sub-gap states in non-uniform helical spin chains on the surface of superconductors
- Yu-Shiba-Rusinov states in 2D superconductors with arbitrary Fermi contours
- Anomalous excitations of atomically crafted quantum magnets
- Wave-function engineering on superconducting substrates: Chiral Yu-Shiba-Rusinov molecules
- Tailoring phase transition from topological superconductor to trivial superconductor induced by magnetic textures of a spin-chain on a -wave superconductor
- Calculations of in-gap states of ferromagnetic spin chains on \textit{s}-wave wide-band superconductors
- Tracking a Spin-Polarized Superconducting Bound State across a Quantum Phase Transition
- Systematic study of Mn atoms, artificial dimers and chains on superconducting Ta(110)
- Boosting the STM's spatial and energy resolution with double-functionalized probe tips
- Search for large topological gaps in atomic spin chains on proximitized superconducting heavy metal layers
- Increased localization of Majorana modes in antiferromagnetic chains on superconductors
- Diamagnetic property and optical absorption in conventional superconductors with magnetic impurities
- Shiba states in systems with density of states singularities
- Effects of electron-electron interactions in the Yu-Shiba-Rusinov lattice model
- Magnetic flux induced higher-order topological superconductivity
- Fractional spin excitations and conductance in the spiral staircase Heisenberg ladder
- Direct signatures of -level hybridization and dimerization in magnetic adatom chains on a superconductor
- Scalable Effective Models for Superconducting Nanostructures: Applications to Double, Triple, and Quadruple Quantum Dots