论文标题

用超电原子实现的可调的海森堡模型中的自旋传输

Spin transport in a tunable Heisenberg model realized with ultracold atoms

论文作者

Jepsen, Niklas, Amato-Grill, Jesse, Dimitrova, Ivana, Ho, Wen Wei, Demler, Eugene, Ketterle, Wolfgang

论文摘要

相互作用的简单模型在物理中起着重要作用。它们捕获了许多磁性材料的性质,但也延伸到其他系统,例如晶格中的玻色子和费米,具有量规场,高-TC超导体的系统以及具有外来粒子(例如Anyons和Majorana fermions)的系统。为了研究和比较这些模型,需要一个多功能平台。意识到这种系统一直是超速原子领域的长期目标。到目前为止,仅在各向同性的海森堡模型中研究了自旋运输。在这里,我们实现了具有可调各向异性的海森伯格XXZ模型,并使用该系统研究旋转转运远离刻痕的自旋螺旋模式的量子淬灭后,远离平衡。在非相互作用的XX模型中,我们发现自旋动力学的弹道行为,而在各向同性XXX模型中,我们发现了扩散行为。对于阳性各向异性,动力学的范围从异常的超扩散到亚伸缩,具体取决于各向异性,而对于负各向异性,我们观察到时间域中从弹道到扩散运输的交叉。这种行为与对线性响应制度的期望形成对比,并在理解远离平衡的量子多体动力学方面提出了新的问题。

Simple models of interacting spins play an important role in physics. They capture the properties of many magnetic materials, but also extend to other systems, such as bosons and fermions in a lattice, systems with gauge fields, high-Tc superconductors, and systems with exotic particles such as anyons and Majorana fermions. In order to study and compare these models, a versatile platform is needed. Realizing such a system has been a long-standing goal in the field of ultracold atoms. So far, spin transport has only been studied in the isotropic Heisenberg model. Here we implement the Heisenberg XXZ model with adjustable anisotropy and use this system to study spin transport far from equilibrium after quantum quenches from imprinted spin helix patterns. In the non-interacting XX model, we find ballistic behavior of spin dynamics, while in the isotropic XXX model, we find diffusive behavior. For positive anisotropies, the dynamics ranges from anomalous super-diffusion to sub-diffusion depending on anisotropy, whereas for negative anisotropies, we observe a crossover in the time domain from ballistic to diffusive transport. This behavior contrasts with expectations for the linear response regime and raises new questions in understanding quantum many-body dynamics far away from equilibrium.

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