• Title of article

    Quantum computational capability of a 2D valence bond solid phase Original Research Article

  • Author/Authors

    Akimasa Miyake، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    16
  • From page
    1656
  • To page
    1671
  • Abstract
    Quantum phases of naturally-occurring systems exhibit distinctive collective phenomena as manifestation of their many-body correlations, in contrast to our persistent technological challenge to engineer at will such strong correlations artificially. Here we show theoretically that quantum correlations exhibited in the 2D valence bond solid phase of a quantum antiferromagnet, modeled by Affleck, Kennedy, Lieb, and Tasaki (AKLT) as a precursor of spin liquids and topological orders, are sufficiently complex yet structured enough to simulate universal quantum computation when every single spin can be measured individually. This unveils that an intrinsic complexity of naturally-occurring 2D quantum systems—which has been a long-standing challenge for traditional computers—could be tamed as a computationally valuable resource, even if we are limited not to create newly entanglement during computation. Our constructive protocol leverages a novel way to herald the correlations suitable for deterministic quantum computation through a random sampling, and may be extensible to other ground states of various 2D valence bond phases beyond the AKLT state.
  • Keywords
    Quantum computation , 2D valence bond solid (VBS) phase , Affleck–Kennedy–Lieb–Tasaki (AKLT) ground state
  • Journal title
    Annals of Physics
  • Serial Year
    2011
  • Journal title
    Annals of Physics
  • Record number

    1206481