English

Correlation functions of sourced gravitational waves in inflationary scalar vector models. A symmetry based approach

General Relativity and Quantum Cosmology 2019-09-24 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

We use conformal symmetry to constrain the shape of inflationary correlators in the presence of long-lived vector field perturbations. Applying conformal Ward identities, we derive general expressions, up to amplitudes and normalization factors, for the two and three point correlators in the presence of vector fields mediated by the interaction f(ϕ)(FμνFμν+αF~μνFμν)f(\phi)\left(F_{\mu \nu}F^{\mu \nu}+\alpha\tilde{F}_{\mu \nu}F^{\mu \nu}\right), where f(ϕ)f(\phi) is a suitable coupling function between the scalar and the vector field. The previous interaction allows for isotropy and parity symmetry breaking and is consistent with super horizon conformal symmetry. As an application of the conformal field theory techniques followed here, we evaluate the mixed tensor-scalar γζ\langle \gamma \zeta \rangle and tensor-scalar-scalar γζζ\langle \gamma \zeta \zeta \rangle correlators which are interesting to look for parity violating effects related with chiral gravitational waves. Finally, we derive consistency relations for the three point correlators obtained.

Keywords

Cite

@article{arxiv.1905.00900,
  title  = {Correlation functions of sourced gravitational waves in inflationary scalar vector models. A symmetry based approach},
  author = {Juan P. Beltrán Almeida and Josué Motoa-Manzano and César A. Valenzuela-Toledo},
  journal= {arXiv preprint arXiv:1905.00900},
  year   = {2019}
}

Comments

Typos corrected, some clarifying comments added and references added. Matches the published version