Joint Quantum Institute, University of Maryland Department of Physics and National Institute of Standards and Technology, College Park, MD 20742, USA.
Science. 2013 May 3;340(6132):583-7. doi: 10.1126/science.1232296.
Frustration, or the competition between interacting components of a network, is often responsible for the emergent complexity of many-body systems. For instance, frustrated magnetism is a hallmark of poorly understood systems such as quantum spin liquids, spin glasses, and spin ices, whose ground states can be massively degenerate and carry high degrees of quantum entanglement. Here, we engineer frustrated antiferromagnetic interactions between spins stored in a crystal of up to 16 trapped (171)Yb(+) atoms. We control the amount of frustration by continuously tuning the range of interaction and directly measure spin correlation functions and their coherent dynamics. This prototypical quantum simulation points the way toward a new probe of frustrated quantum magnetism and perhaps the design of new quantum materials.
挫折感,或网络相互作用组件之间的竞争,通常是许多体系统复杂性涌现的原因。例如,受挫磁性是量子自旋液体、自旋玻璃和自旋冰等理解不佳的系统的标志,其基态可能存在大量简并,并具有高度的量子纠缠。在这里,我们在一个晶体中设计了存储的自旋之间的受挫反铁磁相互作用,晶体中包含多达 16 个被捕获的 (171)Yb(+)原子。我们通过连续调整相互作用范围来控制挫折感的程度,并直接测量自旋相关函数及其相干动力学。这种典型的量子模拟为受挫量子磁性的新探针,也许是新型量子材料的设计提供了思路。