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February 5, 20260 citations

Matching high- and low-temperature regimes of massive scalar fields

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MAM. AsoreyFEF. Ezquerro

Key Points

  • The aim is to investigate how high- and low-temperature expansions affect the effective action of massive scalar fields with varying boundary conditions.
  • Analyzed the effective action for massive scalar fields confined between two infinite walls.
  • Compared effects of different boundary conditions on the vacuum energy.
  • Identified the relationship between boundary conditions and the rate of exponential decay.
  • Exponential decay of vacuum energy significantly varies with boundary conditions.
  • The decay rate is halved when boundary conditions are interconnected compared to disconnected ones.
  • For periodic boundary conditions, the decay rate is half that of Dirichlet boundary conditions.

Abstract

We analyze the matching of high- and low-temperature expansions of the effective action of massive scalar fields confined between two infinite walls with different boundary conditions. One remarkable effect in the low-temperature regime is the exponential decay of the vacuum energy with the distance of the boundary walls. This exponential decay depends on the boundary conditions. When the conditions involve any kind of interconnection between the boundary values of the fields at the two walls the rate of the exponential decay is half than when the two boundaries are not connected. In particular, this rate for periodic boundary conditions is half of that for Dirichlet boundary conditions.

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Cite This Study

Asorey et al. (2025) studied this question.

synapsesocial.com/papers/6984343ff1d9ada3c1fb2337https://doi.org/10.1209/0295-5075/aded32/pdf
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