Coherent pairs probe disorder-suppressed quantum dynamics in a random dipolar magnet
ORAL
Abstract
I present such a noise suppression with a concurrent increase of coherence times by more than to two orders of magnitude beyond the time scale set by random dipolar interactions in the rare-earth magnet LiY1-xTbxF4. Using Hahn-echo pulse sequences, our measurements find that pairs of atypically close terbium ions host entangled excited states with strongly enhanced coherence times owing to a clock state transition in the presence of suppressed noise and scarce decay channels. These pairs are identified in the frequency domain via coherent driving of Rabi oscillations whose frequency reveals the composite nature of the coupled two-level systems. Exploiting multiple levels of protection for coherence of pair states, we use them as sensitive probes to unveil the heterogeneous dynamics of the interacting quantum magnet.
*We acknowledge financial support by the Swiss National Science Foundation, Grant No. 200021_166271 and the European Research Council under the European Union's Horizon 2020 research and innovation programme HERO (Grant agreement No. 810451).
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Presenters
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Adrian Beckert
- Laboratory for Micro and Nanotechnology, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland.