论文标题

可调式巡回旋转动力学用极性分子

Tunable itinerant spin dynamics with polar molecules

论文作者

Li, Jun-Ru, Matsuda, Kyle, Miller, Calder, Carroll, Annette N., Tobias, William G., Higgins, Jacob S., Ye, Jun

论文摘要

强烈的相互作用的旋转是许多有趣的现象和从磁性到量子信息处理的许多有趣现象和应用。相互作用的旋转与运动表现出异国的自旋转运现象相结合,例如由旋转吸引引起的旋转配对引起的超流体。为了了解这些复杂的现象,需要具有高可控性的相互作用的自旋系统。已经在功能不同的不同平台上研究了量子自旋动力学。在这里,我们证明了使用二极化的偶极相互作用使用二极钾分子的气体相互作用来实现的,二维分子的气体局限于二维平面,其中Spin-1/2系统被编码为分子旋转水平。偶极相互作用会导致旋转过渡频率的变化,并从耦合的自旋和运动中出现碰撞限制的Ramsey对比衰减。 ISING和自旋交换相互作用均通过改变电场的强度和方向以及内部分子状态来精确调节。这种完整的可调性可以使旋转哈密顿量的静态和动力控制,从而逆转相干的自旋动力学。我们的工作建立了一个相互作用的自旋平台,可以利用强,可调的偶极相互作用来探索多体旋转动力学和自旋运动物理。

Strongly interacting spins underlie many intriguing phenomena and applications ranging from magnetism to quantum information processing. Interacting spins combined with motion display exotic spin transport phenomena, such as superfluidity arising from pairing of spins induced by spin attraction. To understand these complex phenomena, an interacting spin system with high controllability is desired. Quantum spin dynamics have been studied on different platforms with varying capabilities. Here we demonstrate tunable itinerant spin dynamics enabled by dipolar interactions using a gas of potassium-rubidium molecules confined to two-dimensional planes, where a spin-1/2 system is encoded into the molecular rotational levels. The dipolar interaction gives rise to a shift of the rotational transition frequency and a collision-limited Ramsey contrast decay that emerges from the coupled spin and motion. Both the Ising and spin exchange interactions are precisely tuned by varying the strength and orientation of an electric field, as well as the internal molecular state. This full tunability enables both static and dynamical control of the spin Hamiltonian, allowing reversal of the coherent spin dynamics. Our work establishes an interacting spin platform that allows for exploration of many-body spin dynamics and spin-motion physics utilizing the strong, tunable dipolar interaction.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源