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Non-classical correlations of accelerated observers interacting with a classical stochastic noise beyond the single mode approximation

机译:加速观测器与超越单模近似的经典随机噪声相互作用的非经典相关性

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Abstract This paper investigates the behaviour of the quantum correlations for an accelerated two-qubit system during its interaction with a classical stochastic field, utilizing the Wigner function and concurrence. The non-classical behaviour is indicated by negative values of the Wigner function, while the degree of entanglement is demonstrated by the concurrence. To consider acceleration and interaction with a common or independent environment, we discard the single-mode approximation and utilize the Unruh construction of the quantum field mode in our analysis. Our results suggest that coherence suppression is caused by the acceleration effect, noise strength, and noise frequency. Through an examination of quantum concurrence, this study analyses the level of quantum entanglement that corresponds positively with negative values of the Wigner function. The findings indicate that coherence degradation in the initial system is reduced when observers interact independently with their environments, as opposed to interacting with a common environment. Additionally, the acceleration of both observers has an impact on coherence reduction. During system evolution, the Wigner function displays collapse and reappearance behaviour, while quantum entanglement undergoes local collapse and revival phenomena. Notably, common noise situations exhibit more rapid variation in both the Wigner function and entanglement compared to independent noise configurations.
机译:摘要 利用Wigner函数和并发性研究了加速双量子比特系统在与经典随机场相互作用过程中的量子相关性行为。非经典行为由Wigner函数的负值表示,而纠缠程度则由并发表示。为了考虑加速度以及与公共或独立环境的相互作用,我们放弃了单模近似,并在分析中使用了量子场模的Unruh结构。结果表明,相干抑制是由加速效应、噪声强度和噪声频率引起的。通过对量子并发性的检查,本研究分析了与维格纳函数的负值正对应的量子纠缠水平。研究结果表明,当观察者独立地与环境交互时,初始系统中的相干性退化会减少,而不是与共同环境交互。此外,两个观察者的加速对相干性降低有影响。在系统演化过程中,Wigner函数表现出坍缩和再现行为,而量子纠缠则表现出局部坍缩和复活现象。值得注意的是,与独立的噪声配置相比,常见的噪声情况在Wigner函数和纠缠方面都表现出更快速的变化。

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