English

Massive-ish Particles from Small-ish Scales: Non-Perturbative Techniques for Cosmological Collider Physics from Large-Scale Structure Surveys

Cosmology and Nongalactic Astrophysics 2024-07-12 v1 High Energy Physics - Phenomenology

Abstract

Massive particles produced during inflation impact soft limits of primordial correlators. Searching for these signatures presents an exciting opportunity to uncover the particle spectrum in the inflationary epoch. We present non-perturbative methods to constrain intermediate-mass scalars (0m/H<3/20\leq m/H<3/2, where HH is the inflationary Hubble scale) produced during inflation, which give rise to a power-law scaling in the squeezed primordial bispectrum. Exploiting the large-scale structure consistency relations and the separate universe approach, we derive models for the late-time squeezed matter bispectrum and collapsed matter trispectrum sourced by these fields. To validate our models, we run NN-body simulations with the "Cosmological Collider" squeezed bispectrum for two different particle masses. Our models yield unbiased constraints on the amplitude of non-Gaussianity, fNLΔf_{\rm NL}^{\Delta}, from the squeezed bispectrum and collapsed trispectrum deep into the non-linear regime (kmax2 h/Mpck_{\rm max}\approx 2~h/{\rm Mpc} at z=0z=0). We assess the information content of these summary statistics, emphasizing the importance of sample variance cancellation in the matter sector. We also study the scale-dependent halo bias in our simulations. For mass-selected halos, the non-Gaussian bias estimated from our simulations agrees with predictions based on (i) separate universe simulations and (ii) universal mass functions. With further work, these results can be used to search for inflationary massive particle production with upcoming galaxy surveys.

Keywords

Cite

@article{arxiv.2407.08731,
  title  = {Massive-ish Particles from Small-ish Scales: Non-Perturbative Techniques for Cosmological Collider Physics from Large-Scale Structure Surveys},
  author = {Samuel Goldstein and Oliver H. E. Philcox and J. Colin Hill and Lam Hui},
  journal= {arXiv preprint arXiv:2407.08731},
  year   = {2024}
}

Comments

25 pages, 11 figures; comments welcome