A 5D holographic QCD axion model identifies bulk modes for the axion and eta prime, traces the quality problem to insufficient compositeness, and finds the physical axion mostly in the bulk gauge field when quality is high.
Giannotti, Status and Perspectives on Axion searches, PoSCOSMICWISPers2024, 033 (2025), arXiv:2412.08733 [hep-ph]
5 Pith papers cite this work. Polarity classification is still indexing.
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hep-ph 5representative citing papers
A resonant cavity with a quantum Hall sample detects axion dark matter through photon absorption that produces a measurable ~5 mK temperature increase at millikelvin temperatures.
The study calculates sensitivity of space- and Moon-based radio telescopes to resonant light dark matter conversion in solar system targets, finding encouraging prospects for dark photon searches with the Sun and axion-like particle conversion in Jupiter's magnetosphere.
Proposes using low-conductivity cylindrical samples in strong B-fields to detect axion-induced bulk currents, with SNR estimates indicating feasibility for R=80 cm at 4 K.
Constructs supersymmetric axionic electrodynamics with axino-photino interactions, quartic couplings, and numerical bosonic solutions resembling magnetic vortices.
citing papers explorer
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The Holographic QCD Axion in Five Dimensions
A 5D holographic QCD axion model identifies bulk modes for the axion and eta prime, traces the quality problem to insufficient compositeness, and finds the physical axion mostly in the bulk gauge field when quality is high.
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Detection of Dark Matter Axions via the Quantum Hall Effect in a Resonant Cavity
A resonant cavity with a quantum Hall sample detects axion dark matter through photon absorption that produces a measurable ~5 mK temperature increase at millikelvin temperatures.
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Low-frequency radio telescopes sensitivity to light dark matter
The study calculates sensitivity of space- and Moon-based radio telescopes to resonant light dark matter conversion in solar system targets, finding encouraging prospects for dark photon searches with the Sun and axion-like particle conversion in Jupiter's magnetosphere.
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A Way of Axion Detection with Mass $10^{-4} \text{-}10^{-3}$eV Using Cylindrical Sample with Low Electric Conductivity
Proposes using low-conductivity cylindrical samples in strong B-fields to detect axion-induced bulk currents, with SNR estimates indicating feasibility for R=80 cm at 4 K.
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A Supersymmetric Extension of Axionic Electrodynamics: From Axions and Photons to Axinos and Photinos
Constructs supersymmetric axionic electrodynamics with axino-photino interactions, quartic couplings, and numerical bosonic solutions resembling magnetic vortices.