Covert symmetry breaking

A bstract Reduction from a higher-dimensional to a lower-dimensional field theory can display special features when the zero-level ground state has nontrivial dependence on the reduction coordinates. In particular, a delayed ‘covert’ form of spontaneous symmetry breaking can occur, revealing itself...

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Veröffentlicht in:The journal of high energy physics 2020-10, Vol.2020 (10), p.1-26, Article 157
Hauptverfasser: Erickson, C. W., Harrold, A. D., Leung, Rahim, Stelle, K. S.
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Sprache:eng
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Zusammenfassung:A bstract Reduction from a higher-dimensional to a lower-dimensional field theory can display special features when the zero-level ground state has nontrivial dependence on the reduction coordinates. In particular, a delayed ‘covert’ form of spontaneous symmetry breaking can occur, revealing itself only at fourth order in the lower-dimensional effective field theory action. This phenomenon is explored in a simple model of ( d + 1)-dimensional scalar QED with one dimension restricted to an interval with Dirichlet/Robin boundary conditions on opposing ends. This produces an effective d -dimensional theory with Maxwellian dynamics at the free theory level, but with unusual symmetry breaking appearing in the quartic vector-scalar interaction terms. This simple model is chosen to illuminate the mechanism of effects which are also noted in gravitational braneworld scenarios.
ISSN:1029-8479
1029-8479
DOI:10.1007/JHEP10(2020)157