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Coherent tunneling via adiabatic passage in a three-well Bose-Hubbard system

机译:三井Bose-Hubbard系统中通过绝热通道进行连贯隧穿

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We apply the Bose-Hubbard Hamiltonian to a three-well system and show analytically that coherent transport via adiabatic passage (CTAP) of N noninteracting particles across the chain is possible. We investigate the effect of detuning the middle well to recover CTAP when onsite interparticle interactions would otherwise disrupt the transport. The case of small interactions is restated using first-order perturbation theory to develop criteria for adiabaticity that define the regime where CTAP is possible. Within this regime we investigate restricting the Hilbert space to the minimum necessary basis needed to demonstrate CTAP, which dramatically increases the number of particles that can be efficiently considered. Finally, we compare the results of the Bose-Hubbard model to a mean-field three-mode Gross-Pitaevskii analysis for the equivalent system.
机译:我们将Bose-Hubbard哈密顿量应用于三井系统,并通过分析表明,通过N个非相互作用颗粒通过绝热通道(CTAP)进行相干运输是可能的。当现场粒子间相互作用否则会破坏运输时,我们研究了使中间井失谐以恢复CTAP的效果。使用一阶扰动理论对小相互作用的情况进行了重述,以开发绝热标准,该标准定义了可能进行CTAP的方案。在这种情况下,我们研究了将希尔伯特空间限制在证明CTAP所需的最小必要基础上,这大大增加了可以有效考虑的粒子数量。最后,我们将Bose-Hubbard模型的结果与等效系统的均值场三模式Gross-Pitaevskii分析进行了比较。

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