Dark neutrino interactions make gravitational waves blue
arXiv:1711.09929 · doi:10.1103/PhysRevD.97.063529
Abstract
New interactions of neutrinos can stop them from free streaming in the early Universe even after the weak decoupling epoch. This results in the enhancement of the primordial gravitational wave amplitude on small scales compared to the standard CDM prediction. In this paper we calculate the effect of dark matter neutrino interactions in CMB tensor -modes spectrum. We show that the effect of new neutrino interactions generates a scale or dependent imprint in the CMB -modes power spectrum at . In the event that primordial -modes are detected by future experiments, a departure from scale invariance, with a blue spectrum, may not necessarily mean failure of simple inflationary models but instead may be a sign of non-standard interactions of relativistic particles. New interactions of neutrinos also induce a phase shift in the CMB B-mode power spectrum which cannot be mimicked by simple modifications of the primordial tensor power spectrum. There is rich information hidden in the CMB -modes spectrum beyond just the tensor to scalar ratio.
31 pages, 10 figures. Version published in Phys. Rev. D
References in corpus (62)
- Planck 2015 results. XIII. Cosmological parameters
- The Cosmic Linear Anisotropy Solving System (CLASS) II: Approximation schemes
- Observational evidence for self-interacting cold dark matter
- Results from a search for dark matter in the complete LUX exposure
- BICEP2 I: Detection Of B-mode Polarization at Degree Angular Scales
- Direct constraints on the dark matter self-interaction cross-section from the merging galaxy cluster 1E0657-56
- Monodromy in the CMB: Gravity Waves and String Inflation
- Dark Matter Results From 54-Ton-Day Exposure of PandaX-II Experiment
- First Dark Matter Search Results from the XENON1T Experiment
- A SQUID-based microwave cavity search for dark-matter axions
- BICEP2 / Keck Array VI: Improved Constraints On Cosmology and Foregrounds When Adding 95 GHz Data From Keck Array
- Weak lensing mass reconstruction of the interacting cluster 1E0657-558: Direct evidence for the existence of dark matter
- Dark Matter and Dark Radiation
- The Fermi Galactic Center GeV Excess and Implications for Dark Matter
- The evolution of CMB spectral distortions in the early Universe
- The Quest for B Modes from Inflationary Gravitational Waves
- WIMP-Search Results from the Second CDMSlite Run
- Cosmic Axion Spin Precession Experiment (CASPEr)
- CMB-S4 Science Book, First Edition
- Search for dark matter annihilations towards the inner Galactic halo from 10 years of observations with H.E.S.S
- Limits to dark matter annihilation cross-section from a combined analysis of MAGIC and Fermi-LAT observations of dwarf satellite galaxies
- Dissipative hidden sector dark matter
- A limit on the detectability of the energy scale of inflation
- Damping of Tensor Modes in Cosmology
- Sommerfeld Enhancements for Thermal Relic Dark Matter
- No-Scale Supergravity Realization of the Starobinsky Model of Inflation
- Gravitational lensing as a contaminant of the gravity wave signal in CMB
- Separation of Gravitational-Wave and Cosmic-Shear Contributions to Cosmic Microwave Background Polarization
- PRISM (Polarized Radiation Imaging and Spectroscopy Mission): An Extended White Paper
- Constraining Dark Matter candidates from structure formation
- Reducing the and tensions with Dark Matter-neutrino interactions
- Constraints on Large-Scale Dark Acoustic Oscillations from Cosmology
- Delensing CMB Polarization with External Datasets
- Search for axion-like dark matter through nuclear spin precession in electric and magnetic fields
- Interacting Dark Sector and Precision Cosmology
- Updated constraints on non-standard neutrino interactions from Planck
- Constraining Dark Matter-Neutrino Interactions using the CMB and Large-Scale Structure
- Exploring Cosmic Origins with CORE: Inflation
- Using the Milky Way satellites to study interactions between cold dark matter and radiation
- Delensing the CMB with the Cosmic Infrared Background
- Search for extraterrestrial antineutrino sources with the KamLAND detector
- Search for Neutrinos from Dark Matter Self-Annihilations in the center of the Milky Way with 3 years of IceCube/DeepCore
- Asymmetric Dark Matter and Dark Radiation
- A Hidden Dark Matter Sector, Dark Radiation, and the CMB
- MDM: A Model for Sterile Neutrino and Dark Matter Reconciles Cosmological and Neutrino Oscillation Data after BICEP2
- Internal delensing of Planck CMB temperature and polarization
- Demonstration of cosmic microwave background delensing using the cosmic infrared background
- Does Bose-Einstein condensation of CMB photons cancel μ distortions created by dissipation of sound waves in the early Universe?
- Prospects for Delensing the Cosmic Microwave Background for Studying Inflation
- New solar axion search in CAST with He filling
- Dark Radiation Alleviates Problems with Dark Matter Halos
- Internal Delensing of Cosmic Microwave Background Acoustic Peaks
- Using CMB spectral distortions to distinguish between dark matter solutions to the small-scale crisis
- Future cosmic microwave background delensing with galaxy surveys
- Delensing Cosmic Microwave Background B-modes with the Square Kilometre Array Radio Continuum Survey
- CMB internal delensing with general optimal estimator for higher-order correlations
- Detectability of CMB tensor B modes via delensing with weak lensing galaxy surveys
- IAXO - The International Axion Observatory
- Dark Matter-Neutrino Interaction in Light of Collider and Neutrino Telescope Data
- Searching for Dark Matter Annihilation into Neutrinos with Super-Kamiokande
- Reducing cosmological small scale structure via a large dark matter-neutrino interaction: constraints and consequences
- Joint Bayesian estimation of tensor and lensing B-modes in the power spectrum of CMB polarization data
Cited by in corpus (16)
- In the Realm of the Hubble tension a Review of Solutions
- Cosmological Backgrounds of Gravitational Waves
- Probing the pre-BBN universe with gravitational waves from cosmic strings
- Inflation meets neutrinos
- Flavor-specific Interaction Favors Strong Neutrino Self-coupling in the Early Universe
- Robustness of baryon acoustic oscillation constraints for early-Universe modifications to CDM
- Dark Neutrino interactions phase out the Hubble tension
- Probing neutrino interactions and dark radiation with gravitational waves
- Prior dependence of cosmological constraints on dark matter-radiation interactions
- Inflation models in the light of self-interacting sterile neutrinos
- New Laboratory Constraints on Neutrinophilic Mediators
- First constraints on non-minimally coupled Natural and Coleman-Weinberg inflation and massive neutrino self-interactions with Planck+BICEP/Keck
- Free-Streaming Neutrinos and Their Phase Shift in Current and Future CMB Power Spectra
- Directly Probing Neutrino Interactions through CMB Phase Shift Measurements
- Dark Matter-Radiation Scattering Enhances CMB Phase Shift through Dark Matter-loading
- The Sterile-Active Neutrino Flavor Model: the Imprint of Dark Matter on the Electron Neutrino Spectra