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Magnetostrictively induced stationary entanglement between two microwave fields

Authors :
Heng Shen
Jie Li
M. Y. Yu
Source :
Physical Review Letters, 124(21)
Publication Year :
2019
Publisher :
arXiv, 2019.

Abstract

We present a scheme to entangle two microwave fields by using the nonlinear magnetostrictive interaction in a ferrimagnet. The magnetostrictive interaction enables the coupling between a magnon mode (spin wave) and a mechanical mode in the ferrimagnet, and the magnon mode simultaneously couples to two microwave cavity fields via the magnetic dipole interaction. The magnon-phonon coupling is enhanced by directly driving the ferrimagnet with a strong red-detuned microwave field, and the driving photons are scattered onto two sidebands induced by the mechanical motion. We show that two cavity fields can be prepared in a stationary entangled state if they are respectively resonant with two mechanical sidebands. The present scheme illustrates a new mechanism for creating entangled states of optical fields, and enables potential applications in quantum information science and quantum tasks that require entangled microwave fields.<br />Comment: A new mechanism is introduced to produce entangled microwave fields. To appear in PRL

Details

ISSN :
00319007
Database :
OpenAIRE
Journal :
Physical Review Letters, 124(21)
Accession number :
edsair.doi.dedup.....b1986e54ecafe24eb7ae32f912248245
Full Text :
https://doi.org/10.48550/arxiv.1909.05936