English

Heavy Particle Signatures in Cosmological Correlation Functions with Tensor Modes

High Energy Physics - Theory 2018-06-13 v4

Abstract

We explore the possibility to make use of cosmological data to look for signatures of unknown heavy particles whose masses are on the order of the Hubble parameter during the time of inflation. To be more specific we take up the quasi-single field inflation model, in which the isocurvaton σ\sigma is supposed to be the heavy particle. We study correlation functions involving both scalar (ζ\zeta ) and tensor (γ\gamma ) perturbations and search for imprints of the σ\sigma-particle effects. We make use of the technique of the effective field theory for inflation to derive the ζσ\zeta \sigma and γζσ\gamma \zeta \sigma couplings. With these couplings we compute the effects due to σ\sigma to the power spectrum ζζ\langle \zeta \zeta \rangle and correlations γsζζ\langle \gamma^{s} \zeta \zeta \rangle and γs1γs2ζζ\langle \gamma^{s_{1}} \gamma ^{s_{2}} \zeta \zeta \rangle , where ss, s1s_{1} and s2s_{2} are the polarization indices of gravitons. Numerical analyses of the σ\sigma-mass effects to these corrlations are presented. It is argued that future precise observations of these correlations could make it possible to measure the σ\sigma-mass and the strength of the ζσ\zeta \sigma and γζσ\gamma \zeta \sigma couplings. As an extension to the NN-graviton case we also compute the correlations γs1γsNζζ\langle \gamma ^{s_{1}} \cdots \gamma ^{s_{N}} \zeta \zeta \rangle and γs1γs2Nζζ\langle \gamma ^{s_{1}} \cdots \cdots \gamma ^{s_{2N}} \zeta \zeta \rangle and their σ\sigma-mass effects. It is suggested that larger NN correlation functions are useful to probe larger σ\sigma-mass .

Keywords

Cite

@article{arxiv.1804.06974,
  title  = {Heavy Particle Signatures in Cosmological Correlation Functions with Tensor Modes},
  author = {Ryo Saito and Takahiro Kubota},
  journal= {arXiv preprint arXiv:1804.06974},
  year   = {2018}
}

Comments

37 pages, 12 figures, added references, corrected typos, added Appendix C

R2 v1 2026-06-23T01:28:15.097Z