arXiv · 1701.08482
Quantum magnetomechanics: towards the ultra-strong coupling regime
Abstract
In this paper we investigate a hybrid quantum system comprising a mechanical oscillator coupled via magnetic induced electromotive force to an $LC$ resonator. We derive the Lagrangian and Hamiltonian for this system and find that the interaction can be described by a charge-momentum coupling with a strength that has a strong geometric dependence. We focus our study on a mechanical resonator with a thin-film magnetic coating which interacts with a nano-fabricated planar coil. We determine that the coupling rate between these two systems can enter the strong, ultra-strong, and even deep-strong coupling regimes with experimentally feasible parameters. This magnetomechanical configuration allows for a range of applications including electro-mechanical state transfer and weak-force sensing.
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Erick Romero-Sanchez, Warwick P. Bowen, Michael R. Vanner, Ke Yu Xia, Jason Twamley. 2017-09-28. Quantum magnetomechanics: towards the ultra-strong coupling regime. https://doi.org/10.1103/physrevb.97.024109
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