High-frequency gravitational waves from axion inflation in the weak-backreaction regime
Xun-Jie Xu, Junyu Zhu
hep-ph, astro-ph.CO
Submitted: 2026-07-25
Comments: 28 pages, 8 figures
License: http://creativecommons.org/licenses/by/4.0/
The gist: Axion inflation, characterized by a Chern-Simons interaction between the inflaton and a gauge field, provides a powerful mechanism for generating primordial gravitational waves (GWs) through
Terminology
Abstract
Axion inflation, characterized by a Chern-Simons interaction between the inflaton and a gauge field, provides a powerful mechanism for generating primordial gravitational waves (GWs) through tachyonic enhancement of the gauge field. While recent literature has predominantly focused on the Strong Backreaction (SB) regime to maximize GW signals for future interferometers, this regime suffers from computational complexities as well as the risk of overproducing scalar perturbations. In this work, we investigate gauge field amplification and GW production strictly within the theoretically safer Weak Backreaction (WB) regime, with a particular focus on the largely unexplored non-instantaneous reheating phase. Because the tachyonic enhancement during slow-roll typically increases as inflation approaches its end, it is crucial to investigate how the production of GWs behaves at the very end of inflation and thereafter. By continuously tracking the evolution from slow-roll through reheating to radiation domination, we present a complete picture of inflationary and post-inflationary GW production in this framework. A particularly interesting feature of the post-inflationary phase is that the oscillatory behavior of the inflaton during reheating leads to frequent sign-flips of the instability parameter xi, exciting both helical modes of the gauge field. Our analysis reveals that axion inflation can naturally generate one of the strongest known primordial GW signals at high-frequency bands. The yield is relevant for future precision measurements of the effective number of neutrino species, N eff, and also strongly motivates the development of novel high-frequency GW detectors.
Sources
- Cosmological Backgrounds of Gravitational Waves
- New Sensitivity Curves for Gravitational-Wave Signals from Cosmological Phase Transitions
- Unveiling the Gravitational Universe at \mu-Hz Frequencies
- Naturally inflating on steep potentials through electromagnetic dissipation
- Large Nongaussianity in Axion Inflation
- Gauge Field Production in Axion Inflation: Consequences for Monodromy, non-Gaussianity in the CMB, and Gravitational Waves at Interferometers
- Phenomenology of a Pseudo-Scalar Inflaton: Naturally Large Nongaussianity
- Observable non-gaussianity from gauge field production in slow roll inflation, and a challenging connection with magnetogenesis
- Gravity waves and non-Gaussian features from particle production in a sector gravitationally coupled to the inflaton
- Gauge field production in SUGRA inflation: local non-Gaussianity and primordial black holes
- Observational Constraints on Gauge Field Production in Axion Inflation
- Generation of large-scale magnetic fields, non-Gaussianity, and primordial gravitational waves in inflationary cosmology
- Can slow roll inflation induce relevant helical magnetic fields?
- Hypermagnetic Fields and Baryon Asymmetry from Pseudoscalar Inflation
- Consistent generation of magnetic fields in axion inflation models
- Magnetogenesis from axion inflation
- Hypermagnetogenesis from axion inflation: Model-independent estimates
- Backreaction of electromagnetic fields and the Schwinger effect in pseudoscalar inflation magnetogenesis
- Lattice simulations of axion-U(1) inflation: gravitational waves, magnetic fields, and scalar statistics
- Baryon Asymmetry and Gravitational Waves from Pseudoscalar Inflation
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