Making inflation work: damping of density perturbations due to Planck energy cutoff
In this paper we propose an alternative method for the computation of classical density perturbations from a quantum field in an inflationary scenario. We compute the power spectrum of density perturbations directly from vacuum fluctuations of the ''time-time'' component of the e...
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Veröffentlicht in: | Phys. Rev. D; (United States) 1989-04, Vol.39 (8), p.2100-2107 |
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Sprache: | eng |
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Zusammenfassung: | In this paper we propose an alternative method for the computation of classical density perturbations from a quantum field in an inflationary scenario. We compute the power spectrum of density perturbations directly from vacuum fluctuations of the ''time-time'' component of the energy-momentum tensor. We compute the inhomogeneous part of the correlation function for a massless minimally coupled scalar field in de Sitter space. The Fourier transform of this two-point function leads to the scale-invariant spectrum of perturbations, but is ultraviolet divergent. This expression can be made finite by introducing an (ad hoc) small-distance cutoff in the proper length. We argue that this cutoff should be of the order of the Planck length, and show that, in such a case, the density fluctuations have the acceptable magnitude (/similar to/10/sup -4/) for the case of primordial inflation. Thus the inflationary scenario can be made to work without any fine-tuning. |
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ISSN: | 0556-2821 1089-4918 |
DOI: | 10.1103/PhysRevD.39.2100 |