Fermionic Spinon Theory of Square Lattice Spin Liquids near the Néel State

Quantum fluctuations of the Néel state of the square lattice antiferromagnet are usually described by a CP^{1} theory of bosonic spinons coupled to a U(1) gauge field, and with a global SU(2) spin rotation symmetry. Such a theory also has a confining phase with valence bond solid (VBS) order, and up...

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Main Authors: Alex Thomson, Subir Sachdev
Format: Article
Language:English
Published: American Physical Society 2018-01-01
Series:Physical Review X
Online Access:http://doi.org/10.1103/PhysRevX.8.011012
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spelling doaj-58d1f50fd75147878733b0eac69c12a52020-11-25T02:45:31ZengAmerican Physical SocietyPhysical Review X2160-33082018-01-018101101210.1103/PhysRevX.8.011012Fermionic Spinon Theory of Square Lattice Spin Liquids near the Néel StateAlex ThomsonSubir SachdevQuantum fluctuations of the Néel state of the square lattice antiferromagnet are usually described by a CP^{1} theory of bosonic spinons coupled to a U(1) gauge field, and with a global SU(2) spin rotation symmetry. Such a theory also has a confining phase with valence bond solid (VBS) order, and upon including spin-singlet charge-2 Higgs fields, deconfined phases with Z_{2} topological order possibly intertwined with discrete broken global symmetries. We present dual theories of the same phases starting from a mean-field theory of fermionic spinons moving in π flux in each square lattice plaquette. Fluctuations about this π-flux state are described by (2+1)-dimensional quantum chromodynamics (QCD_{3}) with a SU(2) gauge group and N_{f}=2 flavors of massless Dirac fermions. It has recently been argued by Wang et al. [Deconfined Quantum Critical Points: Symmetries and Dualities, Phys. Rev. X 7, 031051 (2017).PRXHAE2160-330810.1103/PhysRevX.7.031051] that this QCD_{3} theory describes the Néel-VBS quantum phase transition. We introduce adjoint Higgs fields in QCD_{3} and obtain fermionic dual descriptions of the phases with Z_{2} topological order obtained earlier using the bosonic CP^{1} theory. We also present a fermionic spinon derivation of the monopole Berry phases in the U(1) gauge theory of the VBS state. The global phase diagram of these phases contains multicritical points, and our results imply new boson-fermion dualities between critical gauge theories of these points.http://doi.org/10.1103/PhysRevX.8.011012
collection DOAJ
language English
format Article
sources DOAJ
author Alex Thomson
Subir Sachdev
spellingShingle Alex Thomson
Subir Sachdev
Fermionic Spinon Theory of Square Lattice Spin Liquids near the Néel State
Physical Review X
author_facet Alex Thomson
Subir Sachdev
author_sort Alex Thomson
title Fermionic Spinon Theory of Square Lattice Spin Liquids near the Néel State
title_short Fermionic Spinon Theory of Square Lattice Spin Liquids near the Néel State
title_full Fermionic Spinon Theory of Square Lattice Spin Liquids near the Néel State
title_fullStr Fermionic Spinon Theory of Square Lattice Spin Liquids near the Néel State
title_full_unstemmed Fermionic Spinon Theory of Square Lattice Spin Liquids near the Néel State
title_sort fermionic spinon theory of square lattice spin liquids near the néel state
publisher American Physical Society
series Physical Review X
issn 2160-3308
publishDate 2018-01-01
description Quantum fluctuations of the Néel state of the square lattice antiferromagnet are usually described by a CP^{1} theory of bosonic spinons coupled to a U(1) gauge field, and with a global SU(2) spin rotation symmetry. Such a theory also has a confining phase with valence bond solid (VBS) order, and upon including spin-singlet charge-2 Higgs fields, deconfined phases with Z_{2} topological order possibly intertwined with discrete broken global symmetries. We present dual theories of the same phases starting from a mean-field theory of fermionic spinons moving in π flux in each square lattice plaquette. Fluctuations about this π-flux state are described by (2+1)-dimensional quantum chromodynamics (QCD_{3}) with a SU(2) gauge group and N_{f}=2 flavors of massless Dirac fermions. It has recently been argued by Wang et al. [Deconfined Quantum Critical Points: Symmetries and Dualities, Phys. Rev. X 7, 031051 (2017).PRXHAE2160-330810.1103/PhysRevX.7.031051] that this QCD_{3} theory describes the Néel-VBS quantum phase transition. We introduce adjoint Higgs fields in QCD_{3} and obtain fermionic dual descriptions of the phases with Z_{2} topological order obtained earlier using the bosonic CP^{1} theory. We also present a fermionic spinon derivation of the monopole Berry phases in the U(1) gauge theory of the VBS state. The global phase diagram of these phases contains multicritical points, and our results imply new boson-fermion dualities between critical gauge theories of these points.
url http://doi.org/10.1103/PhysRevX.8.011012
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