articlePhysical Review LettersAug 7, 2012LVClosed access

Nature of the Spin-Liquid Ground State of the S = 1 / 2 Heisenberg Model on the Kagome Lattice

Ludwig-Maximilians-Universität München · Center for Theoretical Physics · +2 more institutions

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Abstract

We perform a density-matrix renormalization group (DMRG) study of the S=1/2 Heisenberg antiferromagnet on the kagome lattice to identify the conjectured spin liquid ground state. Exploiting SU(2) spin symmetry, which allows us to keep up to 16,000 DMRG states, we consider cylinders with circumferences up to 17 lattice spacings and find a spin liquid ground state with an estimated per site energy of -0.4386(5), a spin gap of 0.13(1), very short-range decay in spin, dimer and chiral correlation functions, and finite topological entanglement γ consistent with γ=log(2)2, ruling out gapless, chiral, or nontopological spin liquids in favor of a topological spin liquid of quantum dimension 2, with strong evidence for…

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631
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FWCI
51.15
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100%
References
85
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Authors

3

Topics & keywords

Keywords
  • Density matrix renormalization group
  • Quantum spin liquid
  • Physics
  • Ground state
  • Quantum entanglement
  • Spin (aerodynamics)
  • Topological order
  • Quantum mechanics
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