BBN And The CMB Constrain Neutrino Coupled Light WIMPs
arXiv:1411.6005 · doi:10.1103/PhysRevD.91.083505
Abstract
(abridged) In the presence of a light WIMP (mass m_chi < 30 MeV), there are degeneracies among the WIMP's nature, its couplings to standard model particles, its mass, and the number of equivalent (additional) neutrinos, Delta N_nu. These degeneracies cannot be broken by the CMB constraint on the effective number of neutrinos, N_eff. However, since big bang nucleosynthesis (BBN) is also affected by a light WIMP and equivalent neutrinos, complementary BBN and CMB constraints can break some of the degeneracy. In a previous paper BBN and CMB were combined to explore allowed ranges for m_chi, Delta N_nu, and N_eff for light WIMPs that annihilate electromagnetically (EM) to photons and/or electrons/positrons. In this paper BBN predictions with a light WIMP that only couples to neutrinos are calculated. Recent observed abundances of ^2H and ^4He are used to limit m_chi, Delta N_nu, N_eff, and the present-day baryon density. Allowing for a neutrino coupled light WIMP and nonzero Delta N_nu, combined BBN and CMB data give lower limits to m_chi, with a best fit m_chi > 35 MeV, equivalent to no light WIMP at all. All masses below 4--9 MeV (depending on spin) are excluded. Without any light WIMP, BBN alone prefers Delta N_nu = 0.50 +- 0.23, favoring neither Delta N_nu = 0, nor a fully thermalized sterile neutrino (Delta N_nu = 1). This result is consistent with the CMB constraint, N_eff = 3.30 +- 0.27, limiting "new physics" between BBN and recombination. Combining BBN and CMB data gives Delta N_nu = 0.35 +- 0.16 and N_eff = 3.40 +- 0.16; while BBN and the CMB combined require Delta N_nu > 0 at ~98% confidence, they disfavor Delta N_nu > 1 at > 99% confidence. Allowing a neutrino-coupled light WIMP extends the allowed range slightly downward for Delta N_nu and slightly upward for N_eff simultaneously, leaving best-fit values unchanged.
21 pages, 27 figures, minor revisions in response to referee comments, and section commenting on mass limits added
References in corpus (13)
- Primordial Nucleosynthesis in the Precision Cosmology Era
- The Primordial Lithium Problem
- The WIMPless Miracle: Dark Matter Particles without Weak-scale Masses or Weak Interactions
- Cosmic neutrino cascades from secret neutrino interactions
- A Natural Supersymmetric Model with MeV Dark Matter
- Upper Bound on the Dark Matter Total Annihilation Cross Section
- Constraints on Light Dark Matter From Core-Collapse Supernovae
- Testing MeV dark matter with neutrino detectors
- MeV Dark Matter and Small Scale Structure
- Tests of the CMB temperature-redshift relation, CMB spectral distortions and why adiabatic photon production is hard
- Probing nuclear rates with Planck and BICEP2
- The Cosmological Evolution of the Average Mass Per Baryon
- Is PLANCK consistent with primordial deuterium measurements ?
Cited by in corpus (45)
- Refined Bounds on MeV-scale Thermal Dark Sectors from BBN and the CMB
- Making dark matter out of light: freeze-in from plasma effects
- The primordial deuterium abundance of the most metal-poor damped Lyman-alpha system
- BBN constraints on the annihilation of MeV-scale dark matter
- Mono-Neutrino at DUNE: New Signals From Neutrinophilic Thermal Dark Matter
- WIMPs, FIMPs, and Inflaton phenomenology via reheating, CMB and
- Neutrino experiments probe hadrophilic light dark matter
- Joint CMB and BBN Constraints on Light Dark Sectors with Dark Radiation
- Searching for Sub-GeV Dark Matter in the Galactic Centre using Hyper-Kamiokande
- Search for U(1) charged Dark Matter with neutrino telescope
- What does cosmology tell us about the mass of thermal-relic dark matter?
- Nucleosynthesis Predictions and High-Precision Deuterium Measurements
- Dark matter origins of neutrino masses
- Neutrino As The Dark Force
- Towards a full description of MeV dark matter decoupling: a self-consistent determination of relic abundance and
- for Light Dark Matter, , the keV excess and the Hubble Tension
- Constraints on self-interacting Bose-Einstein condensate dark matter using large-scale observables
- Neutrino lines from MeV dark matter annihilation and decay in JUNO
- Light lepton portal dark matter meets the LHC
- Constraints on new physics around the MeV scale with cosmological observations
- Limits on Brane-World and Particle Dark Radiation from Big Bang Nucleosynthesis and the CMB
- CMB signature of non-thermal Dark Matter produced from self-interacting dark sector
- Impact of Massive Neutrinos and Dark Radiation on the High-redshift Cosmic Web. I. Lyman-Alpha Forest Observables
- MeV to multi-TeV thermal WIMPs: most conservative limits
- Anomalous Ionization in the Central Molecular Zone by sub-GeV Dark Matter
- Reducing cosmological small scale structure via a large dark matter-neutrino interaction: constraints and consequences
- Imprints of MeV Scale Hidden Dark Sector at Planck Data
- Limit on the dark matter mass from its interaction with photons
- Reconstructing the early-universe expansion and thermal history
- Dark Matter Is The New BBN
- Composite Dark Matter and Neutrino Masses from a Light Hidden Sector
- Cosmology with Independently Varying Neutrino Temperature and Number
- A Design of Hadronic Calorimeter for DarkSHINE Experiment
- Interacting light thermal-relic dark matter: self-consistent cosmological bounds
- Probing Dark Sector Particles Coupling to Neutrinos with Double Beta Decay
- New Limits on Light Dark Matter-Nucleon Scattering
- EDGES of the dark forest: A new absorption window into the composite dark matter and large scale structure
- Composite heavy axion-like dark matter
- Investigating sub-MeV dark matter annihilation to neutrinos using direct detection experiments
- CMB Constraints on Loop-Induced Decays of Leptophilic Dark Matter
- Searching for MeV-mass neutrinophilic Dark Matter with Large Scale Dark Matter Detectors
- Scalar field dark matter with two components: combined approach from particle physics and cosmology
- The Hubble Tension: Relativistic Dark Matter Production from Long-lived Particles
- Neutrino Condensate Dark Energy from TeV Scale Extra Dimensions
- Dark Matter Energy Deposition and Production from the Table-Top to the Cosmos