Verstraete F, Wolf M M, Perez-Garcia D, Cirac J I
Institute for Quantum Information, Caltech, Pasadena, CA, USA.
Phys Rev Lett. 2006 Jun 9;96(22):220601. doi: 10.1103/PhysRevLett.96.220601. Epub 2006 Jun 6.
The projected entangled pair state (PEPS) representation of quantum states on two-dimensional lattices induces an entanglement based hierarchy in state space. We show that the lowest levels of this hierarchy exhibit a very rich structure including states with critical and topological properties. We prove, in particular, that coherent versions of thermal states of any local 2D classical spin model correspond to such PEPS, which are in turn ground states of local 2D quantum Hamiltonians. This correspondence maps thermal onto quantum fluctuations, and it allows us to analytically construct critical quantum models exhibiting a strict area law scaling of the entanglement entropy in the face of power law decaying correlations. Moreover, it enables us to show that there exist PEPS which can serve as computational resources for the solution of NP-hard problems.
二维晶格上量子态的投影纠缠对态(PEPS)表示在态空间中引入了基于纠缠的层次结构。我们表明,该层次结构的最低层展现出非常丰富的结构,包括具有临界和拓扑性质的态。特别地,我们证明了任何局部二维经典自旋模型的热态的相干版本对应于这样的PEPS,而这些PEPS又是局部二维量子哈密顿量的基态。这种对应关系将热涨落映射到量子涨落,并且使我们能够解析地构造出面对幂律衰减关联时纠缠熵呈现严格面积律标度的临界量子模型。此外,它使我们能够表明存在可作为解决NP难问题的计算资源的PEPS。