English

Cosmological Constraints on Light (but Massive) Relics

Cosmology and Nongalactic Astrophysics 2022-05-24 v2 High Energy Physics - Phenomenology

Abstract

Many scenarios of physics beyond the standard model predict new light, weakly coupled degrees of freedom, populated in the early universe and remaining as cosmic relics today. Due to their high abundances, these relics can significantly affect the evolution of the universe. For instance, massless relics produce a shift ΔNeff\Delta N_{\rm eff} to the cosmic expectation of the effective number of active neutrinos. Massive relics, on the other hand, additionally become part of the cosmological dark matter in the later universe, though their light nature allows them to freely stream out of potential wells. This produces novel signatures in the large-scale structure (LSS) of the universe, suppressing matter fluctuations at small scales. We present the first general search for such light (but massive) relics (LiMRs) with cosmic microwave background (CMB) and LSS data, scanning the 2D parameter space of their masses mXm_X and temperatures TX(0)T_X^{(0)} today. In the conservative minimum-temperature (TX(0)=0.91T_X^{(0)}=0.91 K) scenario, we rule out Weyl (and higher-spin) fermions -- such as the gravitino -- with mX2.26m_X\geq 2.26 eV at 95% C.L., and set analogous limits of mX11.2,1.06,1.56m_X\leq 11.2, 1.06, 1.56 eV for scalar, vector, and Dirac-fermion relics. This is the first search for LiMRs with joint CMB, weak-lensing, and full-shape galaxy data; we demonstrate that weak-lensing data is critical for breaking parameter degeneracies, while full-shape information presents a significant boost in constraining power relative to analyses with only baryon acoustic oscillation parameters. Under the combined strength of these datasets, our constraints are the tightest and most comprehensive to date.

Keywords

Cite

@article{arxiv.2107.09664,
  title  = {Cosmological Constraints on Light (but Massive) Relics},
  author = {Weishuang Linda Xu and Julian B. Muñoz and Cora Dvorkin},
  journal= {arXiv preprint arXiv:2107.09664},
  year   = {2022}
}

Comments

13 pages, 7 figures, updated to match version appearing in PRD

R2 v1 2026-06-24T04:22:23.072Z