Interacting radiation after Planck and its implications for the Hubble Tension
arXiv:2003.08387 · doi:10.1088/1475-7516/2020/09/029
Abstract
Standard cosmology predicts that prior to matter-radiation equality about 41% of the energy density was in free-streaming neutrinos. In many beyond Standard Model scenarios, however, the amount and free-streaming nature of this component is modified. For example, this occurs in models with new neutrino self-interactions or an additional dark sector with interacting light particles. We consider several extensions of the standard cosmology that include a non-free-streaming radiation component as motivated by such particle physics models and use the final Planck data release to constrain them. This release contains significant improvements in the polarization likelihood which plays an important role in distinguishing free-streaming from interacting radiation species. Fixing the total amount of energy in radiation to match the expectation from standard neutrino decoupling we find that the fraction of free-streaming radiation must be at 95% CL (combining temperature, polarization and baryon acoustic oscillation data). Allowing for arbitrary contributions of free-streaming and interacting radiation, the effective number of new non-free-streaming degrees of freedom is constrained to be at 95% CL. Cosmologies with additional radiation are also known to ease the discrepancy between the local measurement and CMB inference of the current expansion rate . We show that including a non-free-streaming radiation component allows for a larger amount of total energy density in radiation, leading to a mild improvement of the fit to cosmological data compared to previously discussed models with only a free-streaming component.
21 pages, 8 figures; v2: new section to discuss implication to models (+2 figures), fixed discussion on neutrino-scalar interactions, references added, conclusions unchanged
References in corpus (10)
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- The Clustering of the SDSS DR7 Main Galaxy Sample I: A 4 per cent Distance Measure at z=0.15
- The trouble with
- The effects of He I 10830 on helium abundance determinations
- Relic neutrino decoupling with flavour oscillations revisited
- Interacting Dark Sector and Precision Cosmology
- Interacting neutrinos in cosmology: exact description and constraints
- Boltzmann hierarchy for interacting neutrinos I: formalism
- Constraints on secret neutrino interactions after Planck
- Covariant Linear Perturbation Formalism
Cited by in corpus (10)
- Probing Physics Beyond the Standard Model: Limits from BBN and the CMB Independently and Combined
- Dynamical dark energy after Planck CMB final release and tension
- Hot New Early Dark Energy
- Massive neutrino self-interactions and inflation
- Velocity-dependent interacting dark energy and dark matter with a Lagrangian description of perfect fluids
- Global view of neutrino interactions in cosmology: The freestreaming window as seen by Planck
- Analyzing the Hubble tension through hidden sector dynamics in the early universe
- Two sides of the same coin: sterile neutrinos and dark radiation. Status and perspectives
- Neutrino Masses from Low Scale Partial Compositeness
- Gravitational waves from first-order phase transitions in Majoron models of neutrino mass