Rabi oscillations from ultrasound in spin systems
C. Calero, E. M. Chudnovsky

TL;DR
This paper demonstrates that GHz-range ultrasound can induce Rabi oscillations in spin systems of molecular magnets, providing a new method to control quantum states using acoustic waves.
Contribution
It introduces a novel approach to generate and analyze Rabi oscillations in spin systems via surface acoustic waves, expanding quantum control techniques.
Findings
Ultrasound in GHz range can induce Rabi oscillations in molecular magnet spins.
Surface acoustic waves can modulate magnetization dynamics.
Conditions for observing this quantum effect are discussed.
Abstract
It is shown that ultrasound in the GHz range can generate space-time Rabi oscillations between spin states of molecular magnets. We compute dynamics of the magnetization generated by surface acoustic waves and discuss conditions under which this novel quantum effect can be observed.
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Taxonomy
TopicsAtomic and Subatomic Physics Research · Advanced NMR Techniques and Applications · Quantum, superfluid, helium dynamics
