Title of article
Trans-Planckian effects in inflationary cosmology and the modified uncertainty principle Original Research Article
Author/Authors
S.F. Hassan، نويسنده , , Martin S. Sloth، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2003
Pages
25
From page
434
To page
458
Abstract
There are good indications that fundamental physics gives rise to a modified space–momentum uncertainty relation that implies the existence of a minimum length scale. We implement this idea in the scalar field theory that describes density perturbations in flat Robertson–Walker space–time. This leads to a non-linear time-dependent dispersion relation that encodes the effects of Planck scale physics in the inflationary epoch. Unruh type dispersion relations naturally emerge in this approach, while unbounded ones are excluded by the minimum length principle. We also find red-shift induced modifications of the field theory, due to the reduction of degrees of freedom at high energies, that tend to dampen the fluctuations at trans-Planckian momenta. In the specific example considered, this feature helps determine the initial state of the fluctuations, leading to a flat power spectrum.
Journal title
Nuclear Physics B
Serial Year
2003
Journal title
Nuclear Physics B
Record number
879763
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