Quantum Hall Systems Studied by the Density Matrix Renormalization Group Method

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Author(s)

Abstract

The ground-state and low-energy excitations of quantum Hall systems are studied by the density matrix renormalization group (DMRG) method. From the ground-state pair correlation functions and low-energy excitions, the ground-state phase diagram is determined, which consists of incompressible liquid states, Fermi liquid type compressible liquid states, and many kinds of CDW states called stripe, bubble and Wigner crystal. The spin transition and the domain formation are studied at ν=2/3. The evolution from composite fermion liquid state to an excitonic state in bilayer systems is investigated at total filling factor ν=1.

Journal

  • Progress of Theoretical Physics

    Progress of Theoretical Physics (176), 182-202, 2009-02-05

    Progress of Theoretical Physics

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Codes

  • NII Article ID (NAID)
    110007081248
  • NII NACSIS-CAT ID (NCID)
    AA00791466
  • Text Lang
    ENG
  • Article Type
    ART
  • ISSN
    03759687
  • NDL Article ID
    9785318
  • NDL Source Classification
    ZM35(科学技術--物理学)
  • NDL Call No.
    Z53-A468
  • Data Source
    CJP  NDL  NII-ELS  NDL-Digital 
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