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Two-channel bose-hubbard model of atoms at a feshbach resonance

机译:菲什巴赫共振的原子的两通道Bose-Hubbard模型

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摘要

Based on the analytic model of Feshbach resonances in harmonic traps described in Schneider a Bose-Hubbard model is introduced that provides an accurate description of two atoms in an optical lattice at a Feshbach resonance with only a small number of Bloch bands. The approach circumvents the problem that the eigenenergies in the presence of a delta-like coupling do not converge to the correct energies, if an uncorrelated basis is used. The predictions of the Bose-Hubbard model are compared to nonperturbative calculations for both the stationary states and the time-dependent wave function during an acceleration of the lattice potential. For this purpose, a square-well interaction potential is introduced, which allows for a realistic description of Feshbach resonances within nonperturbative single-channel calculations.
机译:基于施耐德(Schneider)中描述的谐波陷阱中Feshbach共振的解析模型,引入了Bose-Hubbard模型,该模型可以精确描述光学网格中Feshbach共振中仅有少数Bloch谱带的两个原子。该方法解决了以下问题:如果使用不相关的基础,则在存在类似三角形的耦合时本征能不会收敛到正确的能量。将Bose-Hubbard模型的预测与稳定状态和随时间变化的波动函数在晶格势加速期间的非微扰计算进行比较。为此,引入了方阱相互作用势,该势能在非扰动单通道计算中实际描述Feshbach共振。

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