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February 20, 2008Physical Review Letters713 citationsOpen Access

Area Laws in Quantum Systems: Mutual Information and Correlations

MWMichael M. WolfFVFrank VerstraeteMHMatthew B. Hastings

Key Points

  • This research explores how information in quantum systems adheres to area laws related to mutual information and correlations.
  • Analyzed lattice models in classical and quantum physics.
  • Examined the behavior of mutual information in thermal equilibrium systems.
  • Investigated correlation lengths and their implications for area laws.
  • Demonstrated that information obeys area law in thermal equilibrium systems.
  • Showed that maximal information per unit area diverges as inverse temperature in quantum systems.
  • Established a link between finite correlation length and area law through mutual information.

Abstract

The holographic principle states that on a fundamental level the information content of a region should depend on its surface area rather than on its volume. In this Letter we show that this phenomenon not only emerges in the search for new Planck-scale laws but also in lattice models of classical and quantum physics: the information contained in part of a system in thermal equilibrium obeys an area law. While the maximal information per unit area depends classically only on the number of degrees of freedom, it may diverge as the inverse temperature in quantum systems. It is shown that an area law is generally implied by a finite correlation length when measured in terms of the mutual information.

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Cite This Study

Wolf et al. (2008) studied this question.

synapsesocial.com/papers/69d8a80418b0ca7f91d18b39https://doi.org/10.1103/physrevlett.100.070502
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