论文标题
光学晶格中超电碱性原子的轨道顺序
Orbital ordering of ultracold alkaline-earth atoms in optical lattices
论文作者
论文摘要
我们报告了在依赖状态依赖性光学晶格中的纤维基因碱 - 地球(类似)原子的多组分气中新出现的低温阶段的动态均值理论分析。使用$^{173} $ yb原子的示例,我们表明,具有两个核自旋组件的两轨混合物不仅可以研究磁性,而且是某些固态材料特殊的轨道序列的研究。我们以类似于现有实验的参数来计算和研究完整哈密顿量的相图,并揭示抗铁骨相。这个远程阶段固有地稳定,我们分析了在相应的过渡线上局部和全局可观察物的变化,为实验观察铺平了道路。此外,我们建议对系统进行现实的扩展,以包括和探测Jahn-Teller源场在真实晶体中的关键作用之一。
We report on a dynamical mean-field theoretical analysis of emerging low-temperature phases in multicomponent gases of fermionic alkaline-earth(-like) atoms in state-dependent optical lattices. Using the example of $^{173}$Yb atoms, we show that a two-orbital mixture with two nuclear spin components is a promising candidate for studies of not only magnetic but also staggered orbital ordering peculiar to certain solid-state materials. We calculate and study the phase diagram of the full Hamiltonian with parameters similar to existing experiments and reveal an antiferroorbital phase. This long-range-ordered phase is inherently stable, and we analyze the change of local and global observables across the corresponding transition lines, paving the way for experimental observations. Furthermore, we suggest a realistic extension of the system to include and probe a Jahn-Teller source field playing one of the key roles in real crystals.