Physics – High Energy Physics – High Energy Physics - Theory
Scientific paper
2000-03-02
Phys.Rev. D62 (2000) 063502
Physics
High Energy Physics
High Energy Physics - Theory
17 pages, compressed and RevTex file, including one postscript figure file
Scientific paper
10.1103/PhysRevD.62.063502
We compute the spectrum of primordial gravitational wave perturbations in open de Sitter spacetime. The background spacetime is taken to be the continuation of an O(5) symmetric instanton saddle point of the Euclidean no boundary path integral. The two-point tensor fluctuations are computed directly from the Euclidean path integral. The Euclidean correlator is then analytically continued into the Lorentzian region where it describes the quantum mechanical vacuum fluctuations of the graviton field. Unlike the results of earlier work, the correlator is shown to be unique and well behaved in the infrared. We show that the infrared divergence found in previous calculations is due to the contribution of a discrete gauge mode inadvertently included in the spectrum.
Hawking Stephen W.
Hertog Thomas
Turok Neil
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