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Cosmological Decoherence from Thermal Gravitons

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arxiv 1911.10207 v3 pith:MR3YVTRH submitted 2019-11-22 hep-th astro-ph.COgr-qcquant-ph

classification hep-thastro-ph.COgr-qcquant-ph
keywords decoherencecosmologicalthermalconsequenceseffectprocessestunnelingapplications
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We study the effects of gravitationally-driven decoherence on tunneling processes associated with false vacuum decays, such as the Coleman--De~Luccia instanton. We compute the thermal graviton-induced decoherence rate for a wave function describing a perfect fluid of nonzero energy density in a finite region. When the effective cosmological constant is positive, the thermal graviton background sourced by a de Sitter horizon provides an unavoidable decoherence effect, which may have important consequences for tunneling processes in cosmological history. We discuss generalizations and consequences of this effect and comment on its observability and applications to black hole physics.

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    In single-field inflation, gravitational interactions mixing short-wavelength tensor and scalar modes decohere long-wavelength scalar perturbations at a rate proportional to (H/M_p)^2, with no suppression by the slow-...

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