Entanglement as a sufficient condition for quantum synchronization
between two mechanical oscillators
- URL: http://arxiv.org/abs/2305.02862v1
- Date: Thu, 4 May 2023 14:20:51 GMT
- Title: Entanglement as a sufficient condition for quantum synchronization
between two mechanical oscillators
- Authors: Manju, Shubhrangshu Dasgupta and Asoka Biswas
- Abstract summary: We present an optomechanical model to show that entanglement can be a sufficient condition for quantum synchronization.
We show that entanglement always becomes accompanied by quantum synchronization, though the reverse is not necessarily true.
This behaviour can be observed for a large range of system parameters.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: We present an optomechanical model to show that entanglement can be a
sufficient condition for quantum synchronization of two mechanical oscillators.
As both these entities can be characterized in terms of variances of a set of
EPR-like conjugate quadratures, we investigate whether this leads to a specific
condition for simultaneous existence of the both. In our model, one of the
oscillators makes the cavity, while the other is kept suspended inside the
cavity, and the always-on coupling between the two is mediated via the same
cavity mode. We show that in presence of amplitude modulation with the same
frequency as that of the oscillators, these oscillators get nearly complete
quantum synchronized and entangled simultaneously in the steady state. We also
show that entanglement always becomes accompanied by quantum synchronization,
though the reverse is not necessarily true. Thus, entanglement becomes a
sufficient condition for the quantum synchronization. This behaviour can be
observed for a large range of system parameters.
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