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Attractor states and infrared scaling in de Sitter space

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arxiv gr-qc/0005102 v1 pith:KLZPIW5I submitted 2000-05-23 gr-qc

classification gr-qc
keywords latesitterstatetimesvalueinfraredinitialtensor
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The renormalized expectation value of the energy-momentum tensor for a scalar field with any mass m and curvature coupling xi is studied for an arbitrary homogeneous and isotropic physical initial state in de Sitter spacetime. We prove quite generally that <T_{ab}> has a fixed point attractor behavior at late times, which depends only on m and xi, for any fourth order adiabatic state that is infrared finite. Specifically, when m^2 + xi R > 0, <T_{ab}> approaches the Bunch-Davies de Sitter invariant value at late times, independently of the initial state. When m = xi = 0, it approaches instead the de Sitter invariant Allen-Folacci value. When m = 0 and xi \ge 0 we show that this state independent asymptotic value of the energy-momentum tensor is proportional to the conserved geometrical tensor (3)H_{ab}, which is related to the behavior of the quantum effective action of the scalar field under global Weyl rescaling. This relationship serves to generalize the definition of the trace anomaly in the infrared for massless, non-conformal fields. In the case m^2 + xi R = 0, but m and xi separately different from zero, <T_{ab}> grows linearly with cosmic time at late times. For most values of m and xi in the tachyonic cases, m^2 + xi R < 0, <T_{ab}> grows exponentially at late cosmic times for all physically admissable initial states.

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Cited by 2 Pith papers

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  1. Black Hole and Cosmological Particle Production in Schwarzschild de Sitter

    hep-th 2019-08 conditional novelty 7.0 of 10

    For freely falling observers on the horizons of Schwarzschild de Sitter spacetime, particle production spectra are generally non-thermal and equal the transmission-weighted convolution of the black hole and cosmologic...

  2. From the Fokker-Planck equation to perturbative QFT's results in de Sitter space

    hep-th 2025-04 accept novelty 6.0 of 10

    An iterative Fokker-Planck scheme reproduces the known perturbative two- and four-point correlation functions of a self-interacting spectator scalar field in de Sitter space.

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