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Fast generation of spin-squeezed states in bosonic Josephson junctions

机译:玻色约瑟夫森结中自旋压缩态的快速生成

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We describe methods for the fast production of highly coherent-spin- squeezed many-body states in bosonic Josephson junctions. We start from the known mapping of the two-site Bose-Hubbard (BH) Hamiltonian to that of a single effective particle evolving according to a Schr?dinger-like equation in Fock space. Since, for repulsive interactions, the effective potential in Fock space is nearly parabolic, we extend recently derived protocols for shortcuts to adiabatic evolution in harmonic potentials to the many-body BH Hamiltonian. A comparison with current experiments shows that our methods allow for an important reduction in the preparation times of highly squeezed spin states.
机译:我们描述了在强子约瑟夫森结中快速产生高度相干自旋压缩的多体态的方法。我们从已知的两点Bose-Hubbard(BH)哈密顿量映射到根据Fock空间中类似Schr?dinger方程演化的单个有效粒子的映射开始。由于对于排斥性相互作用,福克空间中的有效势几乎是抛物线形的,因此我们将最近导出的协议引入了将谐波势绝热演化的捷径扩展到多体BH哈密顿量。与当前实验的比较表明,我们的方法大大缩短了自旋态的制备时间。

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