Abstract

Initial conditions given on a spacelike, static slice of a non-globally hyperbolic spacetime may not define the fates of classical and quantum fields uniquely. Such lack of global hyperbolicity is a well-known property of the anti-de Sitter solution and led many authors to question how is it possible to develop a quantum field theory on this spacetime. Wald and Ishibashi took a step towards the healing of that causal issue when considering the propagation of scalar fields on AdS. They proposed a systematic procedure to obtain a physically consistent dynamical evolution. Their prescription relies on determining the self-adjoint extensions of the spatial component of the differential wave operator. Such a requirement leads to the imposition of a specific set of boundary conditions at infinity. We employ their scheme in the particular case of the four-dimensional AdS spacetime and compute the expectation values of the field squared and the energy-momentum tensor, which will then bear the effects of those boundary conditions. We are not aware of any laws of nature constraining us to prescribe the same boundary conditions to all modes of the wave equation. Thus, we formulate a physical setup in which one of those modes satisfy a Robin boundary condition, while all others satisfy the Dirichlet condition. Due to our unusual settings, the resulting contributions to the fluctuations of the expectation values will not respect AdS invariance. As a consequence, a back-reaction procedure would yield a non-maximally symmetric spacetime. Furthermore, we verify the violation of weak energy condition as a direct consequence of our prescription for dynamics.

Highlights

  • One of the most remarkable outcomes of string theory was the proposition of the AdS/CFT correspondence [1]

  • We study physical effects that may arise due to non-Dirichlet boundary conditions at the conformal boundary

  • In this article, we considered the developments made by Ishibashi and Wald in [5], where they propose a physically consistent prescription for the dynamical evolution of fields

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Summary

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We study physical effects that may arise due to non-Dirichlet boundary conditions at the conformal boundary We investigate those effects by computing the vacuum fluctuations of the expectation values of the quadratic field and the energymomentum tensor for conformally coupled scalar fields in AdS4. Since this question does not have an immediate answer, we will try to set up at least the compatibility of our model with basic concepts from quantum field theory In this way, we consider ou model as a first step in showing how non trivial boundary conditions may bring highly nontrivial effects to quantum field theory.

Anti-de Sitter spacetime
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Topology
Causal structure
Scalar fields in non-globally hyperbolic static spacetimes
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Green’s functions in AdS
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Renormalized quantities for a conformal massless scalar field in AdS4
Quadratic field fluctuations 2
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Discussion and further remarks
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Full Text
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