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Quantum-memory-assisted entropic uncertainty relation in a Heisenberg XYZ chain with an inhomogeneous magnetic field

机译:Quantum-Memory辅助熵在Heisenberg XYZ链中的熵不确定性与非官能磁场

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摘要

The uncertainty principle provides a nontrivial bound to expose the precision for the outcome of the measurement on a pair of incompatible observables in a quantum system. Therefore, it is of essential importance for quantum precision measurement in the area of quantum information processing. Herein, we investigate quantum-memory-assisted entropic uncertainty relation (QMA-EUR) in a two-qubit Heisenberg XYZ spin chain. Specifically, we observe the dynamics of QMA-EUR in a realistic model there are two correlated sites linked by a thermal entanglement in the spin chain with an inhomogeneous magnetic field. It turns out that the temperature, the external inhomogeneous magnetic field and the field inhomogeneity can lift the uncertainty of the measurement due to the reduction of the thermal entanglement, and explicitly higher temperature, stronger magnetic field or larger inhomogeneity of the field can result in inflation of the uncertainty. Besides, it is found that there exists distinct dynamical behaviors of the uncertainty for ferromagnetism (J<0) and antiferromagnetism (J>0) chains. Moreover, we also verify that the measuring uncertainty is dramatically anti-correlated with the purity of the bipartite spin system, the greater purity can result in the reduction of the measuring uncertainty, vice versa. Therefore, our observations might provide a better understanding of the dynamics of the entropic uncertainty in the Heisenberg spin chain, and thus shed light on quantum precision measurement in the framework of versatile systems, particularly solid states.
机译:不确定原理提供了一个非活动,以暴露在量子系统中的一对不相容的可观察到的测量结果的精度。因此,对量子信息处理区域中的量子精度测量至关重要。在此,我们研究了两种Qubbit Heisenberg XYZ旋转链中的量子记忆辅助熵不确定性关系(QMA-EUR)。具体地,我们观察QMA-EUR中的QMA-EUR在现实模型中,有两个相关位点通过具有不均匀磁场的旋转链中的热缠绕而连。事实证明,由于热缠绕的降低,温度,外部不均匀磁场和现场不均匀性可以提升测量的不确定性,并且明确更高的温度,更高的磁场或距离的更大的磁场可能导致通货膨胀不确定性。此外,发现铁磁性(J <0)和反铁磁(J> 0)链的不确定度存在不同的动力学行为。此外,我们还验证了测量不确定性与二分旋转系统的纯度显着抗相关,纯度越大,可能导致测量不确定性的减少,反之亦然。因此,我们的观察可能会更好地了解Heisenberg旋转链中的熵不确定性的动态,因此在多功能系统的框架内,特别是固态的框架上的量子精密测量。

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