Double-well instantons in finite volume

A bstract Assuming a toroidal space with finite volume, we derive analytically the full one-loop vacuum energy for a scalar field tunnelling between two degenerate vacua, taking into account discrete momentum. The Casimir energy is computed for an arbitrary number of dimensions using the Abel-Plana...

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Veröffentlicht in:The journal of high energy physics 2024-05, Vol.2024 (5), p.99-29, Article 99
Hauptverfasser: Ai, Wen-Yuan, Alexandre, Jean, Carosi, Matthias, Garbrecht, Björn, Pla, Silvia
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Sprache:eng
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Zusammenfassung:A bstract Assuming a toroidal space with finite volume, we derive analytically the full one-loop vacuum energy for a scalar field tunnelling between two degenerate vacua, taking into account discrete momentum. The Casimir energy is computed for an arbitrary number of dimensions using the Abel-Plana formula, while the one-loop instanton functional determinant is evaluated using the Green’s functions for the fluctuation operators. The resulting energetic properties are non-trivial: both the Casimir effect and tunnelling contribute to the Null Energy Condition violation, arising from a non-extensive true vacuum energy. We discuss the relevance of this mechanism to induce a cosmic bounce, requiring no modified gravity or exotic matter.
ISSN:1029-8479
1029-8479
DOI:10.1007/JHEP05(2024)099