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Inflationary helical magnetic fields with a sawtooth coupling

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arxiv 2301.07699 v2 pith:SKYNX4EZ submitted 2023-01-18 astro-ph.CO

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keywords magneticfieldshelicalinflationcouplingduringmodellarge
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abstract

We study the generation of helical magnetic fields during inflation by considering a model which does not suffer from strong coupling or large back-reaction. Electromagnetic conformal invariance is broken only during inflation by coupling the gauge-invariants $F_{\mu\nu}F^{\mu\nu}$ and $F_{\mu\nu}{\tilde{F}}^{\mu\nu}$ to a time-dependent function $I$ with a sharp transition during inflation. The magnetic power spectrum is scale-invariant up to the transition and very blue-shifted after that. The subsequent evolution of the helical magnetic field is subjected to magneto-hydrodynamical processes, resulting in far larger coherence lengths than those occurring after adiabatic decay. Scale-invariant quadratic gravity is a suitable framework to test the model, providing a natural physical interpretation. We show that fully helical magnetic fields are generated with values in agreement with the lower bounds on fields in the Intergalactic Medium derived from blazar observations. This model holds even at large/intermediate energy scales of inflation, contrary to what has been found in previous works.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Parity-violating scalar trispectrum from helical primordial magnetic fields

    astro-ph.CO 2025-05 conditional novelty 7.0 of 10

    Helical primordial magnetic fields produce a computable parity-odd signal in the scalar trispectrum, currently constrained to r_H ≲ 4×10^-4 for B_r = 4.7 nG.

  2. Magnetogenesis from Sawtooth Coupling: Gravitational Wave Probe of Reheating

    astro-ph.CO 2025-06 conditional novelty 5.0 of 10

    A sawtooth coupling active during reheating can generate blue-tilted magnetic fields whose secondary gravitational waves peak at nanohertz to millihertz frequencies.

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