First constraints on QCD axion dark matter using James Webb Space Telescope observations
hep-ph, astro-ph.CO
Submitted: 2025-03-14
Updated: 2026-09-18
Comments: 8 pages + appendix, 2 figures, 2 tables. v2: updated JWST data products with generally larger reported uncertainties, added data-driven uncertainty calibration, and revised the corresponding bounds. Matches the current journal submission
Code: https://github.com/elenapinetti/JWST-data
Project page: https://cajohare.github.io/AxionLimits
License: http://creativecommons.org/licenses/by/4.0/
The gist: We present the first constraints on QCD axion dark matter using measurements from the James Webb Space Telescope.
Terminology
Abstract
We present the first constraints on QCD axion dark matter using measurements from the James Webb Space Telescope. By utilizing publicly available MIRI and NIRSpec blank-sky observations, originally collected for sky subtraction purposes, we derive strong limits on the axion-photon coupling constant g a γγ in the mass range 0.1-4 eV. This analysis underscores the potential of blank-sky observations as a powerful tool for constraining dark matter models and demonstrates how astrophysical missions can be repurposed for particle physics research.
Sources
- TASI Lectures on Indirect Detection of Dark Matter
- TASI Lectures on Indirect Searches For Dark Matter
- TASI Lectures on the Particle Physics and Astrophysics of Dark Matter
- Cosmology of axion dark matter
- Axion Dark Matter
- Searching for Light in the Darkness: Bounds on ALP Dark Matter with the optical MUSE-Faint survey
- First Result for Dark Matter Search by WINERED
- Searching for axion-like particle decay in the near-infrared background: an updated analysis
- Probing the Blue Axion with Cosmic Optical Background Anisotropies
- Anisotropic cosmic optical background bound for decaying dark matter in light of the LORRI anomaly
- Revisiting the bound on axion-photon coupling from Globular Clusters
- Advancing Globular Cluster Constraints on the Axion-Photon Coupling
- PPPC 4 DM ID: A Poor Particle Physicist Cookbook for Dark Matter Indirect Detection
- Integral X-ray constraints on sub-GeV Dark Matter
- SHM$^{++}$: A Refinement of the Standard Halo Model for Dark Matter Searches in Light of the Gaia Sausage
- The Near-Infrared Spectrograph (NIRSpec) on the James Webb Space Telescope I. Overview of the instrument and its capabilities
- Dark Matter
- Hunting Dark Matter Lines in the Infrared Background with the James Webb Space Telescope
- Sensitivity of JWST to eV-Scale Decaying Axion Dark Matter
- Robust bounds on ALP dark matter from dwarf spheroidal galaxies in the optical MUSE-Faint survey
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