We show how to prepare a steady-state entangled state between magnons and optical photons in an opto-magnomechanical configuration, where a mechanical vibration mode couples to a magnon mode in a ferrimagnet by the dispersive magnetostrictive interaction, and to an optical cavity by the radiation pressure. We find that, by appropriately driving the magnon mode and the cavity to simultaneously activate the magnomechanical Stokes and the optomechanical anti-Stokes scattering, a stationary optomagnonic entangled state can be created. We further show that, by activating the magnomechanical state-swap interaction and subsequently sending a weak red-detuned optical pulse to drive the cavity, the magnonic state can be read out in the cavity output...
We propose an experimentally realizable nonreciprocal magnonic device at the single-magnon level by ...
The interaction between magnons and mechanical vibrations dynamically modify the properties of the m...
Cavity magnomechanics has recently become a new platform for studying macroscopic quantum phenomena....
We propose a hybrid cavity magnomechanical system to realize and transfer the bipartite entanglement...
Microwave-optics entanglement is a vital component for building hybrid quantum networks. Here, a new...
Cavity magnomechanics has become an ideal platform to explore macroscopic quantum effects. Bringing ...
We show how a quantum state in a microwave cavity mode can be transferred to and stored in a phononi...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
Motivated by entanglement protection, our work utilizes a resonance effect to enhance optomechanical...
Magnon-photon coupling inside a cavity has been experimentally realized and has attracted significan...
Abstract We propose a feasible experimental model to investigate the generation and characterization...
Squeezed light finds many important applications in quantum information science and quantum metrolog...
Quantum entanglement not only plays an important role in the study of the fundamentals of quantum th...
Cavity quantum optomechanics has emerged as a new platform for quantum science and technology with a...
We show how stationary entanglement between an optical cavity field mode and a macroscopic vibrating...
We propose an experimentally realizable nonreciprocal magnonic device at the single-magnon level by ...
The interaction between magnons and mechanical vibrations dynamically modify the properties of the m...
Cavity magnomechanics has recently become a new platform for studying macroscopic quantum phenomena....
We propose a hybrid cavity magnomechanical system to realize and transfer the bipartite entanglement...
Microwave-optics entanglement is a vital component for building hybrid quantum networks. Here, a new...
Cavity magnomechanics has become an ideal platform to explore macroscopic quantum effects. Bringing ...
We show how a quantum state in a microwave cavity mode can be transferred to and stored in a phononi...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
Motivated by entanglement protection, our work utilizes a resonance effect to enhance optomechanical...
Magnon-photon coupling inside a cavity has been experimentally realized and has attracted significan...
Abstract We propose a feasible experimental model to investigate the generation and characterization...
Squeezed light finds many important applications in quantum information science and quantum metrolog...
Quantum entanglement not only plays an important role in the study of the fundamentals of quantum th...
Cavity quantum optomechanics has emerged as a new platform for quantum science and technology with a...
We show how stationary entanglement between an optical cavity field mode and a macroscopic vibrating...
We propose an experimentally realizable nonreciprocal magnonic device at the single-magnon level by ...
The interaction between magnons and mechanical vibrations dynamically modify the properties of the m...
Cavity magnomechanics has recently become a new platform for studying macroscopic quantum phenomena....