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A Simple Method for One-Loop Renormalization in Curved Space-Time

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arxiv 1303.0180 v2 pith:BKT6YB2G submitted 2013-03-01 hep-th gr-qchep-ph

classification hep-thgr-qchep-ph
keywords methodadiabaticsimplecomponentscountertermscurvedenergy-momentumfield
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We present a simple method for deriving the renormalization counterterms from the components of the energy-momentum tensor in curved space-time. This method allows full control over the finite parts of the counterterms and provides explicit expressions for each term separately. As an example, the method is used for the self-interacting scalar field in a Friedmann-Robertson-Walker metric in the adiabatic approximation, where we calculate the renormalized equation of motion for the field and the renormalized components of the energy-momentum tensor to fourth adiabatic order while including interactions to one-loop order. Within this formalism the trace anomaly, including contributions from interactions, is shown to have a simple derivation. We compare our results to those obtained by two standard methods, finding agreement with the Schwinger-DeWitt expansion but disagreement with adiabatic subtractions for interacting theories.

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Cited by 2 Pith papers

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    SpheriCo.jl enables longer semiclassical collapse simulations and yields hints of non-trivial correlations of the scalar field across a dynamically formed apparent horizon.

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    astro-ph.CO 2025-02 conditional novelty 5.0 of 10

    Vacuum transitions during inflation, modulated by a light spectator field, can generate curvature perturbations with non-Gaussianity fNL ~ O(10) in a Higgs inflation setup.

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