SU(N)→ SU(2) symmetry breaking in quantum antiferromagnets

We study a SU(2)-symmetric spin-3/2 system on a bipartite lattice close to the antiferromagnetic SU(4)-symmetric point, which can be described by the CP3 model with a perturbation breaking the symmetry from SU(4) down to SU(2) and favoring the Néel ordering. We show that the effective theory of the...

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Main Authors: A.K. Kolezhuk, T.L. Zavertanyi
Format: Article
Language:English
Published: Institute for Condensed Matter Physics 2021-01-01
Series:Condensed Matter Physics
Subjects:
Online Access:https://doi.org/10.5488/CMP.23.43711
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author A.K. Kolezhuk
T.L. Zavertanyi
author_facet A.K. Kolezhuk
T.L. Zavertanyi
author_sort A.K. Kolezhuk
collection DOAJ
description We study a SU(2)-symmetric spin-3/2 system on a bipartite lattice close to the antiferromagnetic SU(4)-symmetric point, which can be described by the CP3 model with a perturbation breaking the symmetry from SU(4) down to SU(2) and favoring the Néel ordering. We show that the effective theory of the perturbed model is not the usual O(3) nonlinear sigma model (NLSM), but rather the O(3) x O(2) NLSM. We show that in the presence of perturbation, the topological charge q of the CP3 field is connected to the O(3)-NLSM type topological charge of the spin texture Q (defined in a usual way via the unit Néel vector) by the relation q=3Q, thus under the influence of the perturbation unit-charge skyrmions of CP^3 model bind into triplets. We also show that in the general spin-S case, symmetry breaking from SU(2S+1) to SU(2) results in the general relation 2S Q_O(3)=q_CP^2S between CP^2S and O(3) charges, so one can expect 2S-multiplet binding of skyrmions.
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spelling doaj.art-25eb7352f0044744aefdbf46276026ee2022-12-21T21:03:38ZengInstitute for Condensed Matter PhysicsCondensed Matter Physics1607-324X2224-90792021-01-012344371110.5488/CMP.23.43711SU(N)→ SU(2) symmetry breaking in quantum antiferromagnetsA.K. KolezhukT.L. ZavertanyiWe study a SU(2)-symmetric spin-3/2 system on a bipartite lattice close to the antiferromagnetic SU(4)-symmetric point, which can be described by the CP3 model with a perturbation breaking the symmetry from SU(4) down to SU(2) and favoring the Néel ordering. We show that the effective theory of the perturbed model is not the usual O(3) nonlinear sigma model (NLSM), but rather the O(3) x O(2) NLSM. We show that in the presence of perturbation, the topological charge q of the CP3 field is connected to the O(3)-NLSM type topological charge of the spin texture Q (defined in a usual way via the unit Néel vector) by the relation q=3Q, thus under the influence of the perturbation unit-charge skyrmions of CP^3 model bind into triplets. We also show that in the general spin-S case, symmetry breaking from SU(2S+1) to SU(2) results in the general relation 2S Q_O(3)=q_CP^2S between CP^2S and O(3) charges, so one can expect 2S-multiplet binding of skyrmions.https://doi.org/10.5488/CMP.23.43711frustrated magnetsskyrmionscold gases in optical lattices
spellingShingle A.K. Kolezhuk
T.L. Zavertanyi
SU(N)→ SU(2) symmetry breaking in quantum antiferromagnets
Condensed Matter Physics
frustrated magnets
skyrmions
cold gases in optical lattices
title SU(N)→ SU(2) symmetry breaking in quantum antiferromagnets
title_full SU(N)→ SU(2) symmetry breaking in quantum antiferromagnets
title_fullStr SU(N)→ SU(2) symmetry breaking in quantum antiferromagnets
title_full_unstemmed SU(N)→ SU(2) symmetry breaking in quantum antiferromagnets
title_short SU(N)→ SU(2) symmetry breaking in quantum antiferromagnets
title_sort su n su 2 symmetry breaking in quantum antiferromagnets
topic frustrated magnets
skyrmions
cold gases in optical lattices
url https://doi.org/10.5488/CMP.23.43711
work_keys_str_mv AT akkolezhuk sunsu2symmetrybreakinginquantumantiferromagnets
AT tlzavertanyi sunsu2symmetrybreakinginquantumantiferromagnets