4.6 Article

Gravitational waves from axion monodromy

出版社

IOP Publishing Ltd
DOI: 10.1088/1475-7516/2016/11/003

关键词

axions; cosmological phase transitions; inflaxions; string theory and cosmology

资金

  1. DFG Transregional Collaborative Research Centre [TRR 33]
  2. DFG Graduiertenkolleg [GRK 1940]

向作者/读者索取更多资源

Large field inflation is arguably the simplest and most natural variant of slowroll inflation. Axion monodromy may be the most promising framework for realising this scenario. As one of its de fi ning features, the long-range polynomial potential possesses shortrange, instantonic modulations. These can give rise to a series of local minima in the postin flationary region of the potential. We show that for certain parameter choices the inflaton populates more than one of these vacua inside a single Hubble patch. This corresponds to a dynamical phase decomposition, analogously to what happens in the course of thermal firstorder phase transitions. In the subsequent process of bubble wall collisions, the lowest-lying axionic minimum eventually takes over all space. Our main result is that this violent process sources gravitational waves, very much like in the case of a first-order phase transition. We compute the energy density and peak frequency of the signal, which can lie anywhere in the mHz-GHz range, possibly within reach of next-generation interferometers. We also note that this dynamical phase decomposition phenomenon and its gravitational wave signal are more general and may apply to other inflationary or reheating scenarios with axions and modulated potentials.

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