First-order phase transition in easy-plane quantum antiferromagnets

Quantum phase transitions in Mott insulators do not fit easily into the Landau-Ginzburg-Wilson paradigm. A recently proposed alternative to it is the so called deconfined quantum criticality scenario, providing a new paradigm for quantum phase transitions. In this context it has recently been propos...

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Veröffentlicht in:arXiv.org 2006-12
Hauptverfasser: Kragset, S, Smorgrav, E, Hove, J, Nogueira, F S, Sudbo, A
Format: Artikel
Sprache:eng
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Zusammenfassung:Quantum phase transitions in Mott insulators do not fit easily into the Landau-Ginzburg-Wilson paradigm. A recently proposed alternative to it is the so called deconfined quantum criticality scenario, providing a new paradigm for quantum phase transitions. In this context it has recently been proposed that a second-order phase transition would occur in a two-dimensional spin 1/2 quantum antiferromagnet in the deep easy-plane limit. A check of this conjecture is important for understanding the phase structure of Mott insulators. To this end we have performed large-scale Monte Carlo simulations on an effective gauge theory for this system, including a Berry phase term that projects out the \(S=1/2\) sector. The result is a first-order phase transition, thus contradicting the conjecture.
ISSN:2331-8422
DOI:10.48550/arxiv.0609336