Quantum discord with weak measurement operators of quasi-Werner states based on bipartite entangled coherent states

E. Castro, R. Gómez, C. Ladera, A. Zambrano
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Abstract

Among many applications quantum weak measurements have been shown to be important in exploring fundamental physics issues, such as the experimental violation of the Heisenberg uncertainty relation and the Hardy paradox, and have also technological implications in quantum optics, quantum metrology and quantum communications, where the precision of the measurement is as important as the precision of quantum state preparation. The theory of weak measurement can be formulated using the pre-and post-selected quantum systems, as well as using the weak measurement operator formalism. In this work, we study the quantum discord (QD) of quasi-Werner mixed states based on bipartite entangled coherent states using the weak measurements operator, instead of the projective measurement operators. We then compare the quantum discord for both kinds of measurement operators, in terms of the entanglement quality, the latter being measured using the concept of concurrence. It’s found greater quantum correlations using the weak measurement operators.
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基于二部纠缠相干态的准werner态弱测量算子的量子不和谐
在许多应用中,量子弱测量已被证明在探索基本物理问题方面具有重要意义,例如实验违反海森堡不确定性关系和哈代悖论,并且在量子光学,量子计量学和量子通信中也具有技术意义,其中测量的精度与量子态制备的精度一样重要。弱测量理论可以利用选择前和选择后的量子系统,也可以利用弱测量算子的形式表述。本文利用弱测量算子代替射影测量算子,研究了基于二部纠缠相干态的准werner混合态的量子不和谐。然后我们比较了两种测量算子的量子不和谐,在纠缠质量方面,后者是使用并发的概念来测量的。使用弱测量算子发现了更大的量子相关性。
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