论文标题
在合成通量阶梯中强烈相互作用的SU($ n $)fermionic原子的共振动力
Resonant dynamics of strongly interacting SU($n$) fermionic atoms in a synthetic flux ladder
论文作者
论文摘要
从理论上讲,我们研究了$ n $级别的自旋摩托车耦合的碱 - 地球纤维基原子与su($ n $)对称性相互作用的动力学。我们考虑三维晶格,沿一维的隧道,内部级别被视为合成维度,实现了$ n $ leg lux梯子。激光驾驶用于近距离内部水平并诱导通过梯子的有效磁通量。我们专注于致密和强烈相互作用的制度,在没有磁通的情况下,该系统作为具有抑制运动动力学的Mott绝缘子的表现。在激光狂欢频率与现场相互作用的整数和分数比时,系统在动力学中表现出共振特征。当相互作用有助于克服原子隧道的动力学约束时,就会发生这些共振,从而实现运动。不同的共振允许发展复杂的手性电流模式。当磁场变化时,这些共振类似于在纵向大厅电阻中出现的共振。我们通过研究系统的长期放松行为来表征动态,随着通量的函数,内部级别$ n $和相互作用强度的函数。我们观察到因扰动理论连续阶的谐音过程的出现而引起的一系列非平凡的热前高原。我们讨论了在当前实验条件下观察预测现象的方案。
We theoretically study the dynamics of $n$-level spin-orbit coupled alkaline-earth fermionic atoms with SU($n$) symmetric interactions. We consider three dimensional lattices with tunneling along one dimension, and the internal levels treated as a synthetic dimension, realizing an $n$-leg flux ladder. Laser driving is used to couple the internal levels and to induce an effective magnetic flux through the ladder. We focus on the dense and strongly interacting regime, where in the absence of flux the system behaves as a Mott insulator with suppressed motional dynamics. At integer and fractional ratios of the laser Rabi frequency to the onsite interactions, the system exhibits resonant features in the dynamics. These resonances occur when interactions help overcome kinetic constraints upon the tunneling of atoms, thus enabling motion. Different resonances allow for the development of complex chiral current patterns. The resonances resemble the ones appearing in the longitudinal Hall resistance when the magnetic field is varied. We characterize the dynamics by studying the system's long-time relaxation behavior as a function of flux, number of internal levels $n$, and interaction strength. We observe a series of non-trivial pre-thermal plateaus caused by the emergence of resonant processes at successive orders in perturbation theory. We discuss protocols to observe the predicted phenomena under current experimental conditions.