Scinovex
article Open AccessTop 10% cited

The stochastic gravitational wave background from turbulence and magnetic fields generated by a first-order phase transition

Journal of Cosmology and Astroparticle Physics · 2009 · Vol. 2009(12) · pp. 024–024
Chiara CapriniRuth DurrerGéraldine Servant

Abstract

We analytically derive the spectrum of gravitational waves due to magneto-hydrodynamical turbulence generated by bubble collisions in a first-order phase transition. In contrast to previous studies, we take into account the fact that turbulence and magnetic fields act as sources of gravitational waves for many Hubble times after the phase transition is completed. This modifies the gravitational wave spectrum at large scales. We also model the initial stirring phase preceding the Kolmogorov cascade, while earlier works assume that the Kolmogorov spectrum sets in instantaneously. The continuity in time of the source is relevant for a correct determination of the peak position of the gravitational wave spectrum. We discuss how the results depend on assumptions about the unequal-time correlation of the source and motivate a realistic choice for it. Our treatment gives a similar peak frequency as previous analyses but the amplitude of the signal is reduced due to the use of a more realistic power spectrum for the magneto-hydrodynamical turbulence. For a strongly first-order electroweak phase transition, the signal is observable with the space interferometer LISA.

Pulsars and Gravitational Waves ResearchCosmology and Gravitation TheoriesGamma-ray bursts and supernovaePhysicsGravitational waveTurbulenceGravitational wave backgroundPhase transitionAmplitudeObservableSpectral densityClassical mechanicsQuantum electrodynamics
Citations
470
FWCI
6.75
field-weighted impact
References
95
Percentile
97%
vs. same field & year
Citations per year
Cited by
Energy budget of cosmological first-order phase transitions
Journal of Cosmology and Astroparticle Physics · 2010 · 591 citations
Detecting gravitational waves from cosmological phase transitions with LISA: an update
Journal of Cosmology and Astroparticle Physics · 2020 · 668 citations
Shape of the acoustic gravitational wave power spectrum from a first order phase transition
Physical review. D/Physical review. D. · 2017 · 431 citations
Cosmological backgrounds of gravitational waves
Classical and Quantum Gravity · 2018 · 841 citations
References
Laser interferometry for the Big Bang Observer
Classical and Quantum Gravity · 2006 · 418 citations
Toward a theory of interstellar turbulence. 2: Strong alfvenic turbulence
The Astrophysical Journal · 1995 · 2,110 citations
Gravitational wave production by collisions: more bubbles
Journal of Cosmology and Astroparticle Physics · 2008 · 549 citations
Astrophysical magnetic fields and nonlinear dynamo theory
Physics Reports · 2005 · 1,575 citations
Cosmic separation of phases
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1984 · 3,310 citations
Handbook of Mathematical Functions
American Journal of Physics · 1966 · 40,438 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.