The generation of large-amplitude coherent states of a massive mechanical resonator, and their quantum-limited detection represent useful tools for quantum sensing and for testing fundamental physics theories. In fact, any weak perturbation may affect the coherent quantum evolution of the prepared state, providing a sensitive probe for such a perturbation. Here we consider a cavity optomechanical setup and the case of the detection of a weak mechanical nonlinearity. We consider different strategies, first focusing on the stationary dynamics in the presence of multiple tones driving the system, and then focusing on non-equilibrium dynamical strategies. These methods can be successfully applied for measuring Duffing-like material nonlinearities, or effective nonlinear corrections associated with quantum gravity theories
Large amplitude mechanical coherent states and detection of weak nonlinearities in cavity optomechanics / Li, Wenlin; Piergentili, Paolo; Marzioni, Francesco; Bonaldi, Michele; Borrielli, Antonio; Serra, Enrico; Marin, Francesco; Marino, Francesco; Malossi, Nicola; Natali, Riccardo; Di Giuseppe, Giovanni; Vitali, David. - In: QUANTUM SCIENCE AND TECHNOLOGY. - ISSN 2058-9565. - ELETTRONICO. - 10:(2025), pp. 035055.0-035055.0. [10.1088/2058-9565/ade8a0]
Large amplitude mechanical coherent states and detection of weak nonlinearities in cavity optomechanics
Marin, Francesco;Marino, Francesco;
2025
Abstract
The generation of large-amplitude coherent states of a massive mechanical resonator, and their quantum-limited detection represent useful tools for quantum sensing and for testing fundamental physics theories. In fact, any weak perturbation may affect the coherent quantum evolution of the prepared state, providing a sensitive probe for such a perturbation. Here we consider a cavity optomechanical setup and the case of the detection of a weak mechanical nonlinearity. We consider different strategies, first focusing on the stationary dynamics in the presence of multiple tones driving the system, and then focusing on non-equilibrium dynamical strategies. These methods can be successfully applied for measuring Duffing-like material nonlinearities, or effective nonlinear corrections associated with quantum gravity theories| File | Dimensione | Formato | |
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