Probing multi-state dark matter via optical absorption lines in DESI spectra
astro-ph.CO, hep-ph
Submitted: 2026-09-15
Updated: 2026-09-20
Comments: Comments welcome
Code: https://github.com/desihub/redrock
License: http://creativecommons.org/licenses/by/4.0/
The gist: We search for dark matter through absorption lines imprinted on the spectra of background sources whose sightlines pass through foreground dark matter halos.
Terminology
Abstract
We search for dark matter through absorption lines imprinted on the spectra of background sources whose sightlines pass through foreground dark matter halos. Such a line is a generic feature of multi-state dark matter models that couple to photons through higher-order electromagnetic moments. We focus on the minimal case of a two-state system with a magnetic dipole transition, in which the ground state absorbs a photon and makes a transition to the excited state. For transition energy ΔE about O,(eV), the line falls in the optical band, within reach of spectroscopic surveys such as DESI. Stacking 145,087 spectra of DESI Early Data Release objects paired with foreground GAMA galaxy groups, we find a stacked optical depth consistent with zero and place 2σ upper limits on the magnetic dipole transition cross-section. The limits are strongest at ΔE about 3-5 eV for a few MeV dark matter mass in the parameter space that is inaccessible to both cosmological (BBN+CMB) and direct detection experiments. We forecast that the full DESI and the next-generation spectroscopic surveys will tighten these limits by more than an order of magnitude, establishing spectroscopic stacking as a competitive probe of electromagnetically interacting multi-state dark matter.
Sources
- Direct and indirect limits on the electro-magnetic form factors of WIMPs
- Dark-Matter Electric and Magnetic Dipole Moments
- Electromagnetic properties of dark matter: dipole moments and charge form factor
- Magnetic Inelastic Dark Matter
- EDGES of the dark forest: A new absorption window into the composite dark matter and large scale structure
- Signatures of composite dark matter in the Cosmic Microwave Background spectral distortions
- The Early Data Release of the Dark Energy Spectroscopic Instrument
- Galaxy and Mass Assembly (GAMA): The GAMA Galaxy Group Catalogue (G3Cv1)
- Heavy Meson Masses in Chiral Perturbation Theory with Heavy Quark Symmetry
- Even- and Odd-Parity Charmed Meson Masses in Heavy Hadron Chiral Perturbation Theory
- Phenomenology of Heavy Meson Chiral Lagrangians
- The 21 cm Forest: Radio Absorption Spectra as Probes of Minihalos Before Reionization
- On the physical origin of dark matter density profiles
- Galaxy and Mass Assembly (GAMA): survey diagnostics and core data release
- Galaxy And Mass Assembly (GAMA): The input catalogue and star-galaxy separation
- Galaxy and Mass Assembly (GAMA): Optimal Tiling of Dense Surveys with a Multi-Object Spectrograph
- The DESI Experiment Part I: Science,Targeting, and Survey Design
- The DESI Experiment Part II: Instrument Design
- Overview of the Instrumentation for the Dark Energy Spectroscopic Instrument
- Validation of the Scientific Program for the Dark Energy Spectroscopic Instrument
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