Upcoming searches for decaying dark matter with ULTRASAT ultraviolet maps
arXiv:2404.01500 · doi:10.1103/PhysRevD.111.063521
Abstract
Decaying dark matter (DDM) can be tested via different astrophysical and cosmological probes. In particular, particles in the 9.5 - 30 eV mass range that decay into monochromatic photons, would contribute to the extragalactic background light (EBL) in the ultraviolet (UV) bandwidth. In this work, we show that an intriguing improvement to the constraints on such DDM models can come from broadband UV surveys, such as GALEX or the upcoming ULTRASAT satellite. These provide diffuse light maps of the UV EBL, integrated over a wide redshift range. The cross correlation between intensity fluctuations in these maps with a reference spectroscopic galaxy survey, can be used to reconstruct the redshift evolution of the EBL intensity; in this way, it is also possible to detect signatures of contributions from DDM. We forecast the constraining power of (GALEX+ULTRASAT)DESI, and we show they will be able to detect DDM with decay rate up to . In the context of axion-like particles (ALP), our forecasts can be converted to constraints on the ALP-photon coupling; our results show this technique will test ALP with coupling , more than an order of magnitude better than current bounds in this mass range.
Version accepted for publication in PRD. 17 pages, 9 figures
References in corpus (31)
- Revisiting the bound on axion-photon coupling from Globular Clusters
- HMcode-2020: Improved modelling of non-linear cosmological power spectra with baryonic feedback
- Calibrating Redshift Distributions Beyond Spectroscopic Limits with Cross-Correlations
- The Low-Redshift Lyman Continuum Survey I: New, Diverse Local Lyman-Continuum Emitters
- The Low-Redshift Lyman Continuum Survey II: New Insights into LyC Diagnostics
- Robust cosmological constraints on axion-like particles
- A Telescope Search for Decaying Relic Axions
- Line-Intensity Mapping: Theory Review
- Updated constraints on axion-like particles from temporal information in supernova SN1987A gamma-ray data
- The Irreducible Axion Background
- Axion-sourced fireballs from supernovae
- Carbon Monoxide Intensity Mapping at Moderate Redshifts
- Strong constraints on decay and annihilation of dark matter from heating of gas-rich dwarf galaxies
- GALEX Diffuse Observations of the Sky: The Data
- Cosmological constraints on decaying axion-like particles: a global analysis
- Probing the Blue Axion with Cosmic Optical Background Anisotropies
- Strategies to Detect Dark-Matter Decays with Line-Intensity Mapping
- Investigating the gamma-ray burst from decaying MeV-scale axion-like particles produced in supernova explosions
- The cosmic optical background excess, dark matter, and line-intensity mapping
- The Mystery of the Cosmic Diffuse Ultraviolet Background Radiation
- Anisotropic cosmic optical background bound for decaying dark matter in light of the LORRI anomaly
- Constraining axion-like particles using the white dwarf initial-final mass relation
- Detecting the radiative decay of the cosmic neutrino background with line-intensity mapping
- CMB and Lyman- constraints on dark matter decays to photons
- 21cm signal sensitivity to dark matter decay
- Indirect Detection of eV Dark Matter via Infrared Spectroscopy
- Seeking dark matter with -ray attenuation
- Constraints on dark matter annihilation and decay from the large-scale structure of the nearby universe
- Constraints on dark matter and astrophysics from tomographic -ray cross-correlations
- Forecasts for Broadband Intensity Mapping of the Ultraviolet-Optical Background with CASTOR and SPHEREx
- Constraining ultraviolet emission with the upcoming ULTRASAT satellite