EDGES of the dark forest: A new absorption window into the composite dark matter and large scale structure
arXiv:2301.03624 · doi:10.1103/PhysRevD.109.063512
Abstract
We propose a new method to hunt for dark matter using dark forest/absorption features across the whole electromagnetic spectrum from radio to gamma rays, especially in the bands where there is a desert i.e. regions where no strong lines from baryons are expected. Such novel signatures can arise for dark matter models with a composite nature and internal electromagnetic transitions. The photons from a background source can interact with the dark matter resulting in an absorption signal in the source spectrum. In the case of a compact source, such as a quasar, such interactions in the dark matter halos can produce a series of closely spaced absorption lines, which we call the dark forest. We show that the dark forest feature is a sensitive probe of the dark matter self-interactions and the halo mass function, especially at the low mass end. There is a large volume of parameter space where dark forest is more sensitive compared to the best current and proposed direct detection experiments. Moreover, the absorption of CMB photons by dark matter gives rise to a global absorption signal in the CMB spectrum. For dark matter transition energies in the range eV eV, such absorption features result in spectral distortions of the CMB in the COBE/FIRAS band of 60-600 GHz. If the dark matter transition frequency is 156 GHz, we show that the absorption of CMB photons by dark matter can provide an explanation for the anomalous absorption feature detected by the EDGES collaboration in 50-100 MHz range.
Published version
References in corpus (38)
- The James Webb Space Telescope
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- Concentration, Spin and Shape of Dark Matter Haloes as a Function of the Cosmological Model: WMAP1, WMAP3 and WMAP5 results
- An Update on Monitoring Stellar Orbits in the Galactic Center
- Milky Way Satellite Census. III. Constraints on Dark Matter Properties from Observations of Milky Way Satellite Galaxies
- Turning off the Lights: How Dark is Dark Matter?
- SENSEI: Direct-Detection Constraints on Sub-GeV Dark Matter from a Shallow Underground Run Using a Prototype Skipper-CCD
- A time-resolved picture of our Milky Way's early formation history
- The CMBR fluctuations from HI perturbations prior to reionization
- A Clockwork Theory
- Refined Bounds on MeV-scale Thermal Dark Sectors from BBN and the CMB
- BBN And The CMB Constrain Neutrino Coupled Light WIMPs
- Detecting dark matter WIMPs in the Draco dwarf: a multi-wavelength perspective
- The Local Group dwarf Leo T: HI on the brink of star formation
- The REACH radiometer for detecting the 21-cm hydrogen signal from redshift 7.5 to 28
- Accurate determination of the free-free Gaunt factor; I - non-relativistic Gaunt factors
- Self-Scattering for Dark Matter with an Excited State
- Foreground Model and Antenna Calibration Errors in the Measurement of the Sky-Averaged λ21 cm Signal at z~20
- Hidden Sector Hydrogen as Dark Matter: Small-scale Structure Formation Predictions and the Importance of Hyperfine Interactions
- Creation of the CMB spectrum: precise analytic solutions for the blackbody photosphere
- Symmetry of Cosmological Observables, and a High Hubble Constant as an Indicator of a Mirror World Dark Sector
- Luminous Dark Matter
- Searching for Light in the Darkness: Bounds on ALP Dark Matter with the optical MUSE-Faint survey
- X-ray Lines from Dark Matter: The Good, The Bad, and The Unlikely
- 3.5 keV X-rays as the "21 cm line" of dark atoms, and a link to light sterile neutrinos
- Self-interacting inelastic dark matter: A viable solution to the small scale structure problems
- Direct millicharged dark matter cannot explain EDGES
- Validation of EDGES Low-Band Antenna Beam Model
- The 21 Centimeter Forest
- The broadening of Lyman-alpha forest absorption lines
- The earliest galaxies seen in 21 cm line absorption
- A Bayesian Calibration Framework for EDGES
- The Shadow of Dark Matter
- Towards a Realistic Model of Dark Atoms to Resolve the Hubble Tension
- A composite solution to the EDGES anomaly
- Two-component millicharged dark matter and the EDGES 21cm signal
- The local dark matter distribution in self-interacting dark matter halos