4.8 Review

Matrix product states and projected entangled pair states: Concepts, symmetries, theorems

期刊

REVIEWS OF MODERN PHYSICS
卷 93, 期 4, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/RevModPhys.93.045003

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资金

  1. European Research Council (ERC) under the European Union [636201, 647905, 648913, 742102, 863476]
  2. DFG (German Research Foundation) - MCIN/AEI [EXC2111-390814868, CEX2019-000904-S]

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The theory of entanglement provides a new language for describing interactions and correlations in many-body systems, with vocabulary consisting of qubits and entangled pairs, and syntax provided by tensor networks. Matrix product states and projected entangled pair states describe how entanglement is routed, act as a novel type of nonlocal order parameter, and their symmetries reflect global entanglement patterns. Tensor networks enable the construction of real-space renormalization group flows and fixed points, and are used to examine the entanglement structure of states with topological quantum order.
The theory of entanglement provides a fundamentally new language for describing interactions and correlations in many-body systems. Its vocabulary consists of qubits and entangled pairs, and the syntax is provided by tensor networks. How matrix product states and projected entangled pair states describe many-body wave functions in terms of local tensors is reviewed. These tensors express how the entanglement is routed, act as a novel type of nonlocal order parameter, and the manner in which their symmetries are reflections of the global entanglement patterns in the full system is described. The manner in which tensor networks enable the construction of real-space renormalization group flows and fixed points is discussed, and the entanglement structure of states exhibiting topological quantum order is examined. Finally, a summary of the mathematical results of matrix product states and projected entangled pair states, highlighting the fundamental theorem of matrix product vectors and its applications, is provided.

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