English

Foundations and Applications of Entanglement Renormalization

Quantum Physics 2011-09-27 v1 Strongly Correlated Electrons

Abstract

Understanding the collective behavior of a quantum many-body system, a system composed of a large number of interacting microscopic degrees of freedom, is a key aspect in many areas of contemporary physics. However, as a direct consequence of the difficultly of the so-called many-body problem, many exotic quantum phenomena involving extended systems, such as high temperature superconductivity, remain not well understood on a theoretical level. Entanglement renormalization is a recently proposed numerical method for the simulation of many-body systems which draws together ideas from the renormalization group and from the field of quantum information. By taking due care of the quantum entanglement of a system, entanglement renormalization has the potential to go beyond the limitations of previous numerical methods and to provide new insight to quantum collective phenomena. This thesis comprises a significant portion of the research development of ER following its initial proposal. This includes exploratory studies with ER in simple systems of free particles, the development of the optimisation algorithms associated to ER, and the early applications of ER in the study of quantum critical phenomena and frustrated spin systems.

Keywords

Cite

@article{arxiv.1109.5424,
  title  = {Foundations and Applications of Entanglement Renormalization},
  author = {Glen Evenbly},
  journal= {arXiv preprint arXiv:1109.5424},
  year   = {2011}
}

Comments

PhD thesis submitted to the University of Queensland in Jan 2010. Contains elements from: arXiv:0707.1454, arXiv:0710.0692, arXiv:0801.2449, arXiv:0810.0580, arXiv:0811.0879, arXiv:0904.3383. 174 pages, 56 figures

R2 v1 2026-06-21T19:10:02.549Z