4.4 Article

Dynamics of relaxed inflation

Journal

JOURNAL OF HIGH ENERGY PHYSICS
Volume -, Issue 2, Pages -

Publisher

SPRINGER
DOI: 10.1007/JHEP02(2018)084

Keywords

Beyond Standard Model; Cosmology of Theories beyond the SM; Higgs Physics; Nonperturbative Effects

Funding

  1. I-CORE Program of the Planning Budgeting Committee
  2. Israel Science Foundation [1937/12]
  3. European Research Council (ERC) under the EU Horizon Programme [682676 LDMThExp]
  4. German-Israeli Foundation [I-1283-303.7/2014]
  5. National Science Foundation [PHY-1066293]
  6. Simons Foundation

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The cosmological relaxation of the electroweak scale has been proposed as a mechanism to address the hierarchy problem of the Standard Model. A field, the relaxion, rolls down its potential and, in doing so, scans the squared mass parameter of the Higgs, relaxing it to a parametrically small value. In this work, we promote the relaxion to an inflaton. We couple it to Abelian gauge bosons, thereby introducing the necessary dissipation mechanism which slows down the field in the last stages. We describe a novel reheating mechanism, which relies on the gauge-boson production leading to strong electromagnetic fields, and proceeds via the vacuum production of electron-positron pairs through the Schwinger effect. We refer to this mechanism as Schwinger reheating. We discuss the cosmological dynamics of the model and the phenomenological constraints from CMB and other experiments. We find that a cutoff close to the Planck scale may be achieved. In its minimal form, the model does not generate sufficient curvature perturbations and additional ingredients, such as a curvaton field, are needed.

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