Second order nonlinearity induced multipartite entanglement in a hybrid
magnon cavity QED system
- URL: http://arxiv.org/abs/2206.15326v1
- Date: Thu, 30 Jun 2022 14:56:40 GMT
- Title: Second order nonlinearity induced multipartite entanglement in a hybrid
magnon cavity QED system
- Authors: Y. Zhou and S. Y. Xie and C. J. Zhu and Y. P.Yang
- Abstract summary: We show that the second order nonlinearity can result in strong bipartite entanglement between cavity photons and magnonic modes under two conditions.
For the later one, we also show the possibility for producing the bipartite entanglement between two magnonic modes and tripartite entanglement among the cavity photons and two magnonic modes.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: We present a proposal to produce bipartite and tripartite entanglement in a
hybrid magnon-cavity QED system. Two macroscopic yttrium iron garnet (YIG)
spheres are coupled to a single-mode microwave cavity via magnetic dipole
interaction, while the cavity photons are generated via the two photon process
induced by a pump field. Using the mean field theory, we show that the second
order nonlinearity can result in strong bipartite entanglement between cavity
photons and magnonic modes under two conditions, i.e., $\delta_c
\delta_{m}=2g^2$ and $\delta_c=-\delta_{m}$. For the later one, we also show
the possibility for producing the bipartite entanglement between two magnonic
modes and tripartite entanglement among the cavity photons and two magnonic
modes. Combining these two conditions, we further derive a third condition,
i.e., $\delta_m^2-\phi^2+2g^2=0$, where the tripartite entanglement can be
achieved when two magnonic modes have different resonant frequencies.
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