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Variations on vacuum decay: The scaling Ising and tricritical Ising field theories

Máté Lencsés, Giuseppe Mussardo, G. Takács

2022Physical review. D/Physical review. D.21 citationsDOIOpen Access PDF

Abstract

We study the decay of the false vacuum in the scaling Ising and tricritical Ising field theories using the truncated conformal space approach and compare the numerical results to theoretical predictions in the thin wall limit. In the Ising case, the results are consistent with previous studies on the quantum spin chain and the ${\ensuremath{\varphi}}^{4}$ quantum field theory; in particular, we confirm that while the theoretical predictions get the dependence of the bubble nucleation rate on the latent heat right, they are off by a model-dependent overall coefficient. The tricritical Ising model allows us on the other hand to examine more exotic vacuum degeneracy structures, such as three vacua or two asymmetric vacua, which leads us to study several novel scenarios of false vacuum decay by lifting the vacuum degeneracy using different perturbations.

Topics & Concepts

Ising modelPhysicsScalingCondensed matter physicsTricritical pointStatistical physicsQuantum mechanicsPhase diagramMathematicsPhase (matter)GeometryQuantum many-body systemsTheoretical and Computational PhysicsQuantum Chromodynamics and Particle Interactions
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