Resonant amplification of magnetic seed fields by gravitational waves in the early universe
arXiv:astro-ph/0508556 · doi:10.1103/PhysRevD.72.123509
Abstract
Inflation is known to produce both gravitational waves and seed magnetic fields on scales well beyond the size of the horizon. The general relativistic interaction between these two sources at the end of inflation showed a significant amplification of the initial magnetic seed, which brought the latter within the currently accepted dynamo limits. In the present article we revisit this gravito-magnetic interaction and argue that the observed strong growth of the field is the result of resonance. More specifically, we show that the maximum magnetic boost always occurs when the wavelength of the inducing gravitational radiation and the scale of the original seed field coincide. We also look closer at the physics of the proposed Maxwell-Weyl coupling, consider the implications of finite electrical conductivity for the efficiency of the amplification mechanism and clarify further the mathematics of the analysis.
Revised version (conductivity effects extended), references added, to appear in PRD
References in corpus (10)
- Astrophysical magnetic fields and nonlinear dynamo theory
- Electromagnetic fields in curved spacetimes
- Magnetic field generation from cosmological perturbations
- Generation of Cosmological Seed Magnetic Fields from Inflation with Cutoff
- Biermann Mechanism in Primordial Supernova Remnant and Seed Magnetic Fields
- Gauge Invariant Wave Equations in Curved Space-Times and Primordial Magnetic Fields
- Generation of electromagnetic fields in string cosmology with a massive scalar field on the anti D-brane
- Superadiabatic-type magnetic amplification in conventional cosmology
- Primordial magnetic seed fields from extra dimensions
- Cosmic Superstrings and Primordial Magnetogenesis
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- Origin of cosmic magnetic fields: Superadiabatically amplified modes in open Friedmann universes
- Maxwell-Kostelecký Electromagnetism and Cosmic Magnetization
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- On The Interaction of Gravitational Waves with Magnetic and Electric Fields
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- Primordial magnetic seed field amplification by gravitational waves: comment on gr-qc/0503006
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- A numerical study of primordial magnetic field amplification by inflation-produced gravitational waves
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- Covariant Evolution of Gravitoelectromagnetism