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Published on: September 25, 2020
Two-dimensional image storage in a hybrid opto-electromechanical system based on optomechanically induced
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We propose a scheme for two-dimensional image storage based on optomechanically induced transparency in a hybrid opto-electromechanical system comprising a cavity optomechanical system and a tunable capacitor. This scheme is a fully opto-electromechanical two-dimensional image storage mechanism that is independent of atomic ensembles. The charged mechanical oscillator serves as the coupling interface between these two subsystems. Analytical and numerical results show that the optomechanical coupling strength in the cavity optomechanical system significantly influences the storage performance of two-dimensional images. When the optomechanical coupling strength is fixed, the storage efficiency can be further improved and optimized by modulating the external voltage applied to the capacitor. The proposed scheme holds promise for applications in two-dimensional image information storage and high-fidelity quantum storage in quantum information processing.

