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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Coherence and entanglement in the ground state of a bosonic Josephson junction: Frommacroscopic Schrodinger cat states to separable Fock states
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Coherence and entanglement in the ground state of a bosonic Josephson junction: Frommacroscopic Schrodinger cat states to separable Fock states

机译:玻色约瑟夫森结的基态的相干和纠缠:从宏观的薛定inger猫态到可分离的福克态

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We consider a bosonic Josephson junction made of N ultracold and dilute atoms confined by a quasi-one-dimensional double-well potential within the two-site Bose-Hubbard model framework. The behavior of the sys-tem is investigated at zero temperature by varying the interatomic interaction from the strongly attractive regime to the repulsive one. We show that the ground state exhibits a crossover from a macroscopic Schrodinger-cat state to a separable Fock state through an atomic coherent regime. By diagonalizing the Bose-Hubbard Hamiltonian we characterize the emergence of the macroscopic cat states by calculating the Fisher information F, the coherence by means of the visibility a of the interference fringes in the momentum distribution, and the quantum correlations by using the entanglement entropy S. Both Fisher information and visibility are shown to be related to the ground-state energy by employing the Hellmann-Feynman theorem. This result, together with a perturbative calculation of the ground-state energy, allows simple analytical formulas for F and a to be obtained over a range of interactions, in excellent agreement with the exact diagonalization of the Bose-Hubbard Hamiltonian. In the attractive regime the entanglement entropy attains values very close to its upper limit for a specific interaction strength lying in the region where coherence is lost and self-trapping sets in.
机译:我们考虑一个由N个超冷原子和稀原子构成的玻色约瑟夫森结,该原子由在两点Bose-Hubbard模型框架内的准一维双阱势能所限制。通过改变原子间的相互作用,从强吸引态到排斥态,在零温度下研究了系统的行为。我们表明,基态通过原子相干机制展现出从宏观Schrodinger-cat状态到可分离Fock状态的交叉。通过对玻色-哈伯德哈密顿方程对角化,我们通过计算Fisher信息F表征宏观猫态的出现,利用动量分布中干涉条纹的可见度a得出相干性,并使用纠缠熵S来描述量子相关性。通过采用Hellmann-Feynman定理,Fisher信息和可见性都与基态能量相关。这个结果,加上基态能量的微扰计算,使得可以简单地通过一系列相互作用获得F和a的解析公式,这与Bose-Hubbard哈密顿量的精确对角线化非常吻合。在吸引人的体制中,纠缠熵的值非常接近位于失去相干性和自陷的区域中的特定相互作用强度的上限。

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