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Universality of stationary entanglement in an optomechanical system driven by non-Markovian noise and squeezed light

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arxiv 2502.02979 v2 pith:NBOAOD3M submitted 2025-02-05 quant-ph

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keywords fieldentanglementopticalcoherentoptomechanicaloscillatorenvironmentalnoise
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Optomechanical systems subjected to environmental noise give rise to rich physical phenomena. We investigate entanglement between a mechanical oscillator and the reflected coherent optical field in a general, not necessarily Markovian environment. For the input optical field, we consider stationary Gaussian states and frequency dependent squeezing. We demonstrate that for a coherent laser drive, either unsqueezed or squeezed in a frequency-independent manner, optomechanical entanglement is destroyed after a threshold that depends only on the environmental noises -- independent of the coherent coupling between the oscillator and the optical field, or the squeeze factor. In this way, we have found a universal entangling-disentangling transition. We also show that for a configuration in which the oscillator and the reflected field are separable, entanglement cannot be generated by incorporating frequency-dependent squeezing in the optical field.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Exact Floquet dynamics of strongly damped driven quantum systems

    quant-ph 2025-11 unverdicted novelty 7.0 of 10

    A periodic matrix product operator representation of the influence functional yields a numerically exact Floquet propagator for non-Markovian dynamics in strongly damped driven quantum systems.

  2. Entanglement Dynamics of Separable Squeezed States in Finite Memory Structured Reservoir

    quant-ph 2026-05 unverdicted novelty 5.0 of 10

    Separable squeezed inputs in finite-memory structured reservoirs produce detuning-locked entanglement freezing, birth-death-revival cycles, and integer-locked beating oscillations that persist with small deviations at...

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