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arxiv: 1103.1911 · v2 · submitted 2011-03-09 · ✦ hep-th · astro-ph.CO

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Generation of Coherent Structures After Cosmic Inflation

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classification ✦ hep-th astro-ph.CO
keywords oscillonsstructuresuniversecoherentcoupledenergyequationsfield
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We investigate the nonlinear dynamics of hybrid inflation models, which are characterized by two real scalar fields interacting quadratically. We start by solving numerically the coupled Klein-Gordon equations in static Minkowski spacetime, searching for possible coherent structures. We find long-lived, localized configurations, which we identify as a new kind of oscillon. We demonstrate that these two-field oscillons allow for "excited" states with much longer lifetimes than those found in previous studies of single-field oscillons. We then solve the coupled field equations in an expanding Friedmann-Robertson-Walker spacetime, finding that as the field responsible for inflating the Universe rolls down to oscillate about its minimum, it triggers the formation of long-lived two-field oscillons, which can contribute up to 20% of the total energy density of the Universe. We show that these oscillons emerge for a wide range of parameters consistent with WMAP 7-year data. These objects contain total energy of about 25*10^20 GeV, localized in a region of approximate radius 6*10^-26 cm. We argue that these structures could have played a key role during the reheating of the Universe.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Multi-field oscillons/I-balls in the Friedberg-Lee-Sirlin model

    hep-ph 2026-04 unverdicted novelty 6.0

    Multi-field oscillons in the Friedberg-Lee-Sirlin model form bound states of two co-located oscillons that oscillate at their respective masses due to attractive interactions.