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A model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice

We describe the confining instabilities of a proposed quantum spin liquid underlying the pseudogap metal state of the hole-doped cuprates. The spin liquid can be described by a SU(2) gauge theory of N(f) = 2 massless Dirac fermions carrying fundamental gauge charges—this is the low-energy theory of...

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Autores principales: Christos, Maine, Luo, Zhu-Xi, Shackleton, Henry, Zhang, Ya-Hui, Scheurer, Mathias S., Sachdev, Subir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10214163/
https://www.ncbi.nlm.nih.gov/pubmed/37192166
http://dx.doi.org/10.1073/pnas.2302701120
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author Christos, Maine
Luo, Zhu-Xi
Shackleton, Henry
Zhang, Ya-Hui
Scheurer, Mathias S.
Sachdev, Subir
author_facet Christos, Maine
Luo, Zhu-Xi
Shackleton, Henry
Zhang, Ya-Hui
Scheurer, Mathias S.
Sachdev, Subir
author_sort Christos, Maine
collection PubMed
description We describe the confining instabilities of a proposed quantum spin liquid underlying the pseudogap metal state of the hole-doped cuprates. The spin liquid can be described by a SU(2) gauge theory of N(f) = 2 massless Dirac fermions carrying fundamental gauge charges—this is the low-energy theory of a mean-field state of fermionic spinons moving on the square lattice with π-flux per plaquette in the ℤ(2) center of SU(2). This theory has an emergent SO(5)(f) global symmetry and is presumed to confine at low energies to the Néel state. At nonzero doping (or smaller Hubbard repulsion U at half-filling), we argue that confinement occurs via the Higgs condensation of bosonic chargons carrying fundamental SU(2) gauge charges also moving in π ℤ(2)-flux. At half-filling, the low-energy theory of the Higgs sector has N(b) = 2 relativistic bosons with a possible emergent SO(5)(b) global symmetry describing rotations between a d-wave superconductor, period-2 charge stripes, and the time-reversal breaking “d-density wave” state. We propose a conformal SU(2) gauge theory with N(f) = 2 fundamental fermions, N(b) = 2 fundamental bosons, and a SO(5)(f)×SO(5)(b) global symmetry, which describes a deconfined quantum critical point between a confining state which breaks SO(5)(f) and a confining state which breaks SO(5)(b). The pattern of symmetry breaking within both SO(5)s is determined by terms likely irrelevant at the critical point, which can be chosen to obtain a transition between Néel order and d-wave superconductivity. A similar theory applies at nonzero doping and large U, with longer-range couplings of the chargons leading to charge order with longer periods.
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spelling pubmed-102141632023-11-16 A model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice Christos, Maine Luo, Zhu-Xi Shackleton, Henry Zhang, Ya-Hui Scheurer, Mathias S. Sachdev, Subir Proc Natl Acad Sci U S A Physical Sciences We describe the confining instabilities of a proposed quantum spin liquid underlying the pseudogap metal state of the hole-doped cuprates. The spin liquid can be described by a SU(2) gauge theory of N(f) = 2 massless Dirac fermions carrying fundamental gauge charges—this is the low-energy theory of a mean-field state of fermionic spinons moving on the square lattice with π-flux per plaquette in the ℤ(2) center of SU(2). This theory has an emergent SO(5)(f) global symmetry and is presumed to confine at low energies to the Néel state. At nonzero doping (or smaller Hubbard repulsion U at half-filling), we argue that confinement occurs via the Higgs condensation of bosonic chargons carrying fundamental SU(2) gauge charges also moving in π ℤ(2)-flux. At half-filling, the low-energy theory of the Higgs sector has N(b) = 2 relativistic bosons with a possible emergent SO(5)(b) global symmetry describing rotations between a d-wave superconductor, period-2 charge stripes, and the time-reversal breaking “d-density wave” state. We propose a conformal SU(2) gauge theory with N(f) = 2 fundamental fermions, N(b) = 2 fundamental bosons, and a SO(5)(f)×SO(5)(b) global symmetry, which describes a deconfined quantum critical point between a confining state which breaks SO(5)(f) and a confining state which breaks SO(5)(b). The pattern of symmetry breaking within both SO(5)s is determined by terms likely irrelevant at the critical point, which can be chosen to obtain a transition between Néel order and d-wave superconductivity. A similar theory applies at nonzero doping and large U, with longer-range couplings of the chargons leading to charge order with longer periods. National Academy of Sciences 2023-05-16 2023-05-23 /pmc/articles/PMC10214163/ /pubmed/37192166 http://dx.doi.org/10.1073/pnas.2302701120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Physical Sciences
Christos, Maine
Luo, Zhu-Xi
Shackleton, Henry
Zhang, Ya-Hui
Scheurer, Mathias S.
Sachdev, Subir
A model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice
title A model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice
title_full A model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice
title_fullStr A model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice
title_full_unstemmed A model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice
title_short A model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice
title_sort model of d-wave superconductivity, antiferromagnetism, and charge order on the square lattice
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10214163/
https://www.ncbi.nlm.nih.gov/pubmed/37192166
http://dx.doi.org/10.1073/pnas.2302701120
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