Anisotropic deconfined criticality in Dirac spin liquids
arXiv:2203.01962 · doi:10.1007/JHEP07(2022)141
Abstract
We analyze a Higgs transition from a U(1) Dirac spin liquid to a gapless spin liquid. This spin liquid is of relevance to the spin square lattice antiferromagnet, where recent numerical studies have given evidence for such a phase existing in the regime of high frustration between nearest neighbor and next-nearest neighbor antiferromagnetic interactions (the - model), appearing in a parameter regime between the vanishing of Néel order and the onset of valence bond solid ordering. The proximate Dirac spin liquid is unstable to monopole proliferation on the square lattice, ultimately leading to Néel or valence bond solid ordering. As such, we conjecture that this Higgs transition describes the critical theory separating the gapless spin liquid of the - model from one of the two proximate ordered phases. The transition into the other ordered phase can be described in a unified manner via a transition into an unstable SU(2) spin liquid, which we have analyzed in prior work. By studying the deconfined critical theory separating the U(1) Dirac spin liquid from the gapless spin liquid in a expansion, with proportional to the number of fermions, we find a stable fixed point with an anisotropic spinon dispersion and a dynamical critical exponent . We analyze the consequences of this anisotropic dispersion by calculating the angular profiles of the equal-time Néel and valence bond solid correlation functions, and we find them to be distinct. We also note the influence of the anisotropy on the scaling dimension of monopoles.
42 pages, 6 figures
References in corpus (7)
- "Deconfined" quantum critical points
- Quantum criticality beyond the Landau-Ginzburg-Wilson paradigm
- Algebraic spin liquid as the mother of many competing orders
- Renormalization group theory of nematic ordering in d-wave superconductors
- Gapless spin liquid and valence-bond solid in the Heisenberg model on the square lattice: insights from singlet and triplet excitations
- Monopoles in CP(N-1) model via the state-operator correspondence
- Monopole Quantum Numbers in the Staggered Flux Spin Liquid
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