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Non-Perturbative Aspects of Spontaneous Symmetry Breaking
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abstract
Spontaneous symmetry breaking is studied in the ultralocal limit of a scalar quantum field theory, that is when $E\approx m$ (or infrared limit). In this limit we show that a $ \varphi^4$ theory in the euclidean space in four-dimensions describes naturally instantons. Furthermore, in the infrared limit we show that there is an exact map between $ \varphi^4$ with self-dual Yang-Mills theories. The spontaneous symmetry breaking in the infrared limit for a Higgs portal is also considered and we demonstrate how states of higher energy becomes unstable and spread converting a false vacuum in a true one.
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Cited by 1 Pith paper
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Modeling Confinement in Analogy with Black Holes
The paper maps the black hole interior to a Carrollian scalar field and claims this action matches instanton-dominated QCD, proposing that quark confinement is the same causal trapping as a horizon.
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