New Universal Local Feature in the Inflationary Perturbation Spectrum
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2007-01-28
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Abstract
A model is developed in which the inflaton potential experiences a sudden small change in its
second derivative (the effective mass of the inflaton). An exact treatment demonstrates that the
resulting density perturbation has a quasi-flat power spectrum with a break in its slope (a step in
ns). The step in the spectral index is modulated by characteristic oscillations and results in large
running of the spectral index localised over a few e-folds of scales. A field-theoretic model giving
rise to such behaviour of the inflationary potential is based on a fast phase transition experienced
by a second scalar field weakly coupled to the inflaton. Such a transition is similar to that which
terminates inflation in the hybrid inflationary scenario. This scenario suggests that the observed
running of the spectral index in the WMAP data may be caused by a fast second order phase
transition which occurred during inflation.
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Large scale structure