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首页> 外文期刊>The Journal of Chemical Physics >Non-Markovian dynamics of single- and two-qubit systems interacting with Gaussian and non-Gaussian fluctuating transverse environments
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Non-Markovian dynamics of single- and two-qubit systems interacting with Gaussian and non-Gaussian fluctuating transverse environments

机译:与高斯和非高斯波动横向环境交互的单QUBBit系统的非马洛维亚动态

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摘要

We address the interaction of single-and two-qubit systems with an external transverse fluctuating field and analyze in detail the dynamical decoherence induced by Gaussian noise and random telegraph noise (RTN). Upon exploiting the exact RTN solution of the time-dependent von Neumann equation, we analyze in detail the behavior of quantum correlations and prove the non-Markovianity of the dynamical map in the full parameter range, i.e., for either fast or slow noise. The dynamics induced by Gaussian noise is studied numerically and compared to the RTN solution, showing the existence of (state dependent) regions of the parameter space where the two noises lead to very similar dynamics. We show that the effects of RTN noise and of Gaussian noise are different, i.e., the spectrum alone is not enough to summarize the noise effects, but the dynamics under the effect of one kind of noise may be simulated with high fidelity by the other one. (C) 2016 AIP Publishing LLC.
机译:我们通过外部横向波动场来解决单个和双Qubit系统的相互作用,并详细分析高斯噪声和随机电报噪声(RTN)引起的动态变阻。 在利用时间依赖于von Neumann方程的确切RTN解决方案时,我们详细分析了量子相关的行为,并证明了全参数范围内的动态地图的非市场性,即快速或慢噪声。 通过数值和高斯噪声引起的动态和与RTN解决方案相比,显示了两个噪声导致非常相似的动态的参数空间的(状态相关)区域的存在。 我们表明RTN噪声和高斯噪声的影响是不同的,即单独的光谱是不足以总结噪声效应,但是在另一个噪声的效果下的动态可以用高保真性模拟。 。 (c)2016 AIP发布LLC。

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