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Spin dynamics of two bosons in an optical lattice site: A role of anharmonicity and anisotropy of the trapping potential

机译:光学晶格位置中两个玻色子的自旋动力学:陷阱势的非谐性和各向异性的作用

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We study the spin dynamics of two magnetic chromium atoms trapped in a single site of a deep optical lattice in a resonant magnetic field. Dipole-dipole interactions couple spin degrees of freedom of two particles to their quantized orbital motion. A trap geometry combined with two-body contact s-wave interactions influence a spin dynamics through the energy spectrum of the two-atom system. Anharmonicity and anisotropy of the site results in a "fine" structure of two-body eigenenergies. The structure can be easily resolved by weak magnetic dipole-dipole interactions. As an example we examine the effect of anharmonicity and anisotropy of the binding potential on demagnetization processes. We show that weak dipolar interactions provide a perfect tool for precision spectroscopy of the energy spectrum of the interacting few particle system.
机译:我们研究了共振磁场中深光学晶格的单个位置中捕获的两个磁性铬原子的自旋动力学。偶极-偶极相互作用将两个粒子的自旋自由度耦合到其量化的轨道运动。陷阱的几何形状与两体接触s波相互作用相结合,通过两原子系统的能谱影响自旋动力学。该位点的非谐性和各向异性导致两体特征能量的“精细”结构。该结构可以通过弱磁偶极-偶极相互作用轻松地解析。作为示例,我们检查了结合势的非谐性和各向异性对消磁过程的影响。我们表明弱偶极相互作用为相互作用的少数粒子系统的能谱的精密光谱学提供了一个完美的工具。

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