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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Dynamics of spin-1 bosons in an optical lattice: Spin mixing, quantum-phase-revival spectroscopy, and effective three-body interactions
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Dynamics of spin-1 bosons in an optical lattice: Spin mixing, quantum-phase-revival spectroscopy, and effective three-body interactions

机译:自旋1玻色子在光学晶格中的动力学:自旋混合,量子相-恢复光谱和有效的三体相互作用

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摘要

We study the dynamics of spin-1 atoms in a periodic optical-lattice potential and an external magnetic field in a quantum quench scenario where we start from a superfluid ground state in a shallow lattice potential and suddenly raise the lattice depth. The time evolution of the nonequilibrium state shows collective collapse-and-revival oscillations of matter-wave coherence as well as oscillations in the spin populations. We show that the complex pattern of these two types of oscillations reveals details about the superfluid and magnetic properties of the initial many-body ground state. Furthermore, we show that the strengths of the spin-dependent and spin-independent atom-atom interactions can be deduced from the observations. The Hamiltonian that describes the physics of the final deep lattice not only contains two-body interactions but also effective multibody interactions, which arise due to virtual excitations to higher bands. We derive these effective spin-dependent three-body interaction parameters for spin-1 atoms and describe how spin mixing is affected. Spinor atoms are unique in the sense that multibody interactions are directly evident in the in situ number densities in addition to the momentum distributions. We treat both antiferromagnetic (e.g., 23Na) and ferromagnetic (e.g., 87Rb and 41K) condensates.
机译:我们研究了在量子猝灭情况下自旋1原子在周期性光学晶格势和外部磁场中的动力学,在量子猝灭场景中,我们从处于浅晶格势的超流体基态开始,突然提高了晶格深度。非平衡态的时间演化表明物质波相干的集体崩溃和恢复振荡以及自旋种群的振荡。我们表明,这两种类型的振荡的复杂模式揭示了有关初始多体基态的超流体和磁性的详细信息。此外,我们表明可以从观测值推论自旋依赖性和自旋非依赖性原子-原子相互作用的强度。描述最终深晶格物理学的哈密顿量不仅包含两体相互作用,而且还包含有效的多体相互作用,这是由于对较高能带的虚拟激发而产生的。我们为spin-1原子导出了这些有效的自旋相关的三体相互作用参数,并描述了自旋混合如何受到影响。从动量分布以及原位数密度直接可见多体相互作用的意义上讲,自旋原子是独特的。我们同时处理反铁磁(例如23Na)和铁磁(例如87Rb和41K)冷凝物。

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