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3 Pith papers cite this work. Polarity classification is still indexing.

3 Pith papers citing it

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years

2026 3

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UNVERDICTED 3

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background 2

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representative citing papers

Symbiotic Magnetogenesis during Radiation Domination

astro-ph.HE · 2026-06-23 · unverdicted · novelty 5.0

A symbiotic axion-dilaton system sources a moderately chiral dark U(1) magnetic field of astrophysically relevant strength during radiation domination through tachyonic amplification without fine-tuning.

Suppressed Magnetogenesis from Ultralight Dark Matter due to Finite Conductivity

astro-ph.CO · 2026-04-19 · unverdicted · novelty 5.0

Finite conductivity of the plasma suppresses parametric resonance amplification of electromagnetic fields from ultralight pseudoscalar dark matter, making it impossible to generate magnetic fields of sufficient strength in cosmic voids for observationally viable couplings.

citing papers explorer

Showing 3 of 3 citing papers.

  • Symbiotic Magnetogenesis during Radiation Domination astro-ph.HE · 2026-06-23 · unverdicted · none · ref 30

    A symbiotic axion-dilaton system sources a moderately chiral dark U(1) magnetic field of astrophysically relevant strength during radiation domination through tachyonic amplification without fine-tuning.

  • Audible Axion Magnetogenesis: Linking Intergalactic Magnetic Fields and Gravitational Waves hep-ph · 2026-05-20 · unverdicted · none · ref 81

    Axion-like particles in the trapped misalignment mechanism produce observable gravitational waves while generating intergalactic magnetic fields that exceed blazar lower bounds in the parameter space promising for gravitational wave detection.

  • Suppressed Magnetogenesis from Ultralight Dark Matter due to Finite Conductivity astro-ph.CO · 2026-04-19 · unverdicted · none · ref 4

    Finite conductivity of the plasma suppresses parametric resonance amplification of electromagnetic fields from ultralight pseudoscalar dark matter, making it impossible to generate magnetic fields of sufficient strength in cosmic voids for observationally viable couplings.