Ferromagnets from higher $SU(N)$ representations

Fuente: arXiv
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Auteurs principaux: Polychronakos, Alexios P., Sfetsos, Konstantinos
Format: Preprint
Publié: 2025
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author Polychronakos, Alexios P.
Sfetsos, Konstantinos
author_facet Polychronakos, Alexios P.
Sfetsos, Konstantinos
contents We present a general formalism for deriving the thermodynamics of ferromagnets consisting of "atoms" carrying an arbitrary irreducible representation of $SU(N)$ and coupled through long-range two-body quadratic interactions. Using this formalism, we derive the thermodynamics and phase structure of ferromagnets with atoms in the doubly symmetric or doubly antisymmetric irreducible representations. The symmetric representation leads to a paramagnetic and a ferromagnetic phase with transitions similar to the ones for the fundamental representation studied before. The antisymmetric representation presents qualitatively new features, leading to a paramagnetic and two distinct ferromagnetic phases that can coexist over a range of temperatures, two of them becoming metastable. Our results are relevant to magnetic systems of atoms with reduced symmetry in their interactions compared to the fundamental case.
format Preprint
id arxiv_https___arxiv_org_abs_2501_11681
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Ferromagnets from higher $SU(N)$ representations
Polychronakos, Alexios P.
Sfetsos, Konstantinos
High Energy Physics - Theory
Statistical Mechanics
Mathematical Physics
We present a general formalism for deriving the thermodynamics of ferromagnets consisting of "atoms" carrying an arbitrary irreducible representation of $SU(N)$ and coupled through long-range two-body quadratic interactions. Using this formalism, we derive the thermodynamics and phase structure of ferromagnets with atoms in the doubly symmetric or doubly antisymmetric irreducible representations. The symmetric representation leads to a paramagnetic and a ferromagnetic phase with transitions similar to the ones for the fundamental representation studied before. The antisymmetric representation presents qualitatively new features, leading to a paramagnetic and two distinct ferromagnetic phases that can coexist over a range of temperatures, two of them becoming metastable. Our results are relevant to magnetic systems of atoms with reduced symmetry in their interactions compared to the fundamental case.
title Ferromagnets from higher $SU(N)$ representations
topic High Energy Physics - Theory
Statistical Mechanics
Mathematical Physics
url https://arxiv.org/abs/2501.11681