Coherent spin dynamics between electron and nucleus within a single atom
Lukas M. Veldman, Evert W. Stolte, Mark P. Canavan, Rik Broekhoven,, Philip Willke, La\"etitia Farinacci, Sander Otte

TL;DR
This paper demonstrates the real-time coherent dynamics of a single atom's nuclear and electron spins using ESR-STM, revealing hyperfine interactions and enabling atomic-scale quantum control.
Contribution
It introduces a novel method to observe and control the hyperfine-driven spin flip-flop dynamics of individual atoms with nanosecond resolution.
Findings
Resolved nanosecond coherent hyperfine dynamics
Controlled tuning of electron and nuclear spins via STM magnetic field
Observed complex interference patterns in spin oscillations
Abstract
The nuclear spin, being much more isolated from the environment than its electronic counterpart, enables quantum experiments with prolonged coherence times and presents a gateway towards uncovering the intricate dynamics within an atom. These qualities have been demonstrated in a variety of nuclear spin qubit architectures, albeit with limited control over the direct environment of the nuclei. As a contrasting approach, the combination of electron spin resonance (ESR) and scanning tunnelling microscopy (STM) provides a bottom-up platform to study the fundamental properties of nuclear spins of single atoms on a surface. However, access to the time evolution of these nuclear spins, as was recently demonstrated for electron spins, remained a challenge. Here, we present an experiment resolving the nanosecond coherent dynamics of a hyperfine-driven flip-flop interaction between the spin of…
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Taxonomy
TopicsQuantum and electron transport phenomena · Molecular Junctions and Nanostructures · Surface and Thin Film Phenomena
