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Bose-Hubbard模型中系统初态对量子关联的影响
引用本文:郭红. Bose-Hubbard模型中系统初态对量子关联的影响[J]. 物理学报, 2015, 64(22): 220301-220301. DOI: 10.7498/aps.64.220301
作者姓名:郭红
作者单位:华中师范大学 物理科学与技术学院, 武汉 430079
基金项目:国家量子光学与光量子器件重点实验室(批准号: KF201406)资助的课题.
摘    要:
量子关联是量子信息、量子计算与量子计量领域的重要资源, 在量子纠缠和贝尔非局域性中, 两子系统起着同等关键的作用, Einstein-Podolsky-Rosen (EPR)量子引导关联的强度介于量子纠缠和贝尔非局域性之间, 对单向EPR量子引导关联而言两子系统的作用不对等. 本文研究了双模Bose-Hubbard模型中模间量子关联的动态特性, 揭示了EPR量子引导关联的取向对系统初态模间交换对称性的依赖关系. 根据Hillery-Zubairy纠缠判据以及基于最大平均量子Fisher信息的纠缠判据考察了系统初态对模间量子纠缠演化规律的影响. 如果模间耦合强度远大于同一势阱内粒子间的相互作用, 初始处于SU(2)相干态的系统在具有确定的两子系统交换对称性的条件下, 其量子关联呈现简单的周期性演化规律; 当这种对称性破缺时, 模间量子关联的演化呈现较复杂的崩塌与回复现象.

关 键 词:Bose-Hubbard模型  量子纠缠  Einstein-Podolsky-Rosen量子引导关联  量子Fisher信息
收稿时间:2015-06-22

Effects of initial states on the quantum correlation in Bose-Hubbard model
Guo Hong. Effects of initial states on the quantum correlation in Bose-Hubbard model[J]. Acta Physica Sinica, 2015, 64(22): 220301-220301. DOI: 10.7498/aps.64.220301
Authors:Guo Hong
Affiliation:College of Physical Science And Technology, Central China Normal University, Wuhan 430079, China
Abstract:
Quantum correlation is an important resource in quantum information, quantum computation, and quantum metrology. Quantum entanglement, Einstein-Podolsky-Rosen (EPR) quantum steering and Bell nonlocality are the major quantum correlations. For quantum entanglement and Bell nonlocality, two subsystems play the same significant roles. EPR quantum steering is stronger than entanglement and weaker than Bell nonlocality. It represents the ability of one subsystem to nonlocally affect another subsystem's states through local measurements. In this paper, the dynamic quantum correlation between the modes in the two-site Bose-Hubbard model is investigated. According to Hillery-Zubairy entanglement criterion and based on maximum mean quantum Fisher information, the influences of initial states on the quantum entanglement evolutions are explored. If the coupling between the modes is much greater than that of the particles at the same site, and the initial states are symmetric or anti-symmetric SU(2) coherent states, the quantum correlations show simple periodic evolutions. The oscillation amplitudes of the evolutions increase with the interaction between the particles at the same site. The oscillation period decreases with the coupling strength between the modes. The dependence of the period on the interaction of the particles at the same site is related to the initial states. In other words, the time evolutions of quantum correlation are closely related to the symmetry of the initial states. In the case of symmetric (anti-symmetric) SU(2) coherent state and repulsive (attractive) interaction of the particles at the same site, the system presents two-way quantum steering. When the subsystem exchange symmetry of the initial states is broken, the collapse and revival of quantum correlation appear, moreover one-way quantum steering emerges in the infancy. One-way quantum steering is asymmetric for two subsystems. So exchange asymmetry of the initial state is necessary condition of one-way quantum steering when the Hamiltonian of the system is symmetric for two subsystems.
Keywords:Bose-Hubbard model  quantum entanglement  Einstein-Podolsky-Rosen quantum steering  quantum Fisher information
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