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Simulating the effect of weak measurements by a phase damping channel and determining different measures of bipartite correlations in nuclear magnetic resonance

机译:通过相位阻尼通道模拟弱测量的效果,并确定核磁共振中的二分相关措施

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Quantum discord is a measure based on local projective measurements which captures quantum correlations that may not be fully captured by entanglement. A change in the measurement process, achieved by replacing rank-one projectors with a weak positive operator-valued measure (POVM), allows one to define weak variants of quantum discord. In this work, we experimentally simulate the effect of a weak POVM on a nuclear magnetic resonance quantum information processor. The two-qubit system under investigation is part of a three-qubit system, where one of the qubits is used as an ancillary to implement the phase damping channel. The strength of the weak POVM is controlled by varying the strength of the phase damping channel. We experimentally observed two weak variants of quantum discord namely, super quantum discord and weak quantum discord, in two-qubit Werner and Bell-diagonal states. The resultant dynamics of the states is investigated as a function of the measurement strength. (C) 2020 Elsevier B.V. All rights reserved.
机译:Quantum Discord是一种基于本地投影测量的度量,其捕获可能无法通过纠缠完全捕获的量子相关性。通过更换具有弱正式操作员值措施(POVM)的排列投影仪来实现测量过程的变化,允许人们定义Quantum Discord的弱变种。在这项工作中,我们通过实验模拟弱POVM对核磁共振量子信息处理器的影响。调查下的双Qubit系统是三个Qubit系统的一部分,其中一个Qubits用作实现相位阻尼通道的辅助体。通过改变相阻尼通道的强度来控制弱POVM的强度。我们通过实验观察了两种弱者变种的弱变种,即超级Quantum Discord和弱量子不和谐,在两个Qubit Werner和贝尔对角线状态。作为测量强度的函数来研究各州的所得动态。 (c)2020 Elsevier B.v.保留所有权利。

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