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Dynamics of entanglement and non-classical correlation for four-qubit GHZ state

机译:四比特GHZ状态的纠缠和非经典相关动力学

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Many-qubit entanglement is crucial for quantum information processing although its exploitation is hindered by the detrimental effects of the environment surrounding the many-qubit system. It is thus of importance to study the dynamics of general multipartite non-classical correlation, including but not restricted to entanglement, under noise. We did this study for four-qubit Greenberger-Horne-Zeilinga (GHZ) state under most common noises in an experiment and found that non-classical correlation is more robust than entanglement except when it is imposed to dephasing channel. Quantum discord presents a sudden transition in its dynamics for Pauli-X and Pauli-Y noises as well as Bell-diagonal states interacting with dephasing reservoirs and it decays monotonically for Pauli-Z and isotropic noises.
机译:多量子位纠缠对于量子信息处理至关重要,尽管它的开发受到多量子位系统周围环境的不利影响的阻碍。因此,重要的是研究噪声下一般多部分非经典相关的动力学,包括但不限于纠缠。在一项实验中,我们针对最常见噪声下的四比特Greenberger-Horne-Zeilinga(GHZ)态进行了这项研究,发现非经典相关性比纠缠更强健,除非将其强加于移相通道。对于Pauli-X和Pauli-Y噪声以及与相移储层相互作用的Bell对角线态,量子不和谐呈现出动力学的突然转变,并且对于Pauli-Z和各向同性噪声,其单调衰减。

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