Earth as a transducer for ultralight bosonic dark-matter detection
hep-ph, astro-ph.CO
Submitted: 2026-07-16
Updated: 2026-09-22
Comments: 18 pages, 4 figures
Journal ref: Universe 2026, 12(8), 236
License: http://creativecommons.org/licenses/by-nc-sa/4.0/
The gist: Ultralight bosonic dark matter (UBDM) that couples to electromagnetism can generate an oscillating magnetic-field signal at the Earth's surface.
Terminology
Abstract
Ultralight bosonic dark matter (UBDM) that couples to electromagnetism can generate an oscillating magnetic-field signal at the Earth's surface. This is referred to as the ``Earth transducer" effect, as the Earth converts UBDM into a detectable magnetic field. Similar DM-induced fields in laboratory experiments typically scale with the size L of the experiment. Because the Earth transducer signal instead scales with the large radius of the Earth, R, it is one of the most powerful direct probes of UBDM with masses m DM 1/R about3 times10-14, eV. It has many other favorable properties, such as high spatial and temporal coherence and robustness to atmospheric modeling. In this review, we derive the Earth transducer effect and its properties for multiple UBDM models, and discuss current and future prospects to detect it.
Sources
- Planck 2018 results. VI. Cosmological parameters
- SHM$^{++}$: A Refinement of the Standard Halo Model for Dark Matter Searches in Light of the Gaia Sausage
- WISPy Cold Dark Matter
- New Horizons: Scalar and Vector Ultralight Dark Matter
- A Quantum Description of Wave Dark Matter
- Implications of Abelian Extended Gauge Structures From String Models
- Dark Light, Dark Matter and the Misalignment Mechanism
- Vector Dark Matter from Inflationary Fluctuations
- Axions In String Theory
- String Axiverse
- New ALPS Results on Hidden-Sector Lightweights
- Light shining through walls
- Searching for WISPy Cold Dark Matter with a Dish Antenna
- A Radio for Hidden-Photon Dark Matter Detection
- Dielectric Haloscopes: A New Way to Detect Axion Dark Matter
- New CAST Limit on the Axion-Photon Interaction
- Axion and hidden photon dark matter detection with multilayer optical haloscopes
- Physics potential of the International Axion Observatory (IAXO)
- Tunable axion plasma haloscopes
- Search for axion-like dark matter with ferromagnets
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