Flat space cosmologies in two dimensions: Phase transitions and asymptotic mass domination
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American Physical Society
Abstract
We study flat space cosmologies in two dimensions by taking the flat space limit of the Achúcarro-Ortiz model. We unravel a phase transition between hot flat space and flat space cosmologies, and derive a new dilaton-dependent counterterm required for the consistency of the Euclidean partition function. Our results generalize to asymptotically mass-dominated two-dimensional dilaton gravity models, whose thermodynamical properties we discuss. The novel case of asymptotic mass domination is covered neither by the comprehensive discussion of Grumiller and McNees [J. High Energy Phys. 04 (2007) 074] nor by the more recent generalization to dilaton gravity with confining U ( 1 ) charges in Grumiller et al. [Phys. Rev. D 90, 044032 (2014)].
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Physical Review D, 90(8), 084041.