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Gravitational wave production by collisions: more bubbles

Journal of Cosmology and Astroparticle Physics · 2008 · Vol. 2008(09) · pp. 022–022
Stephan J. HuberThomas Konstandin

Abstract

We reexamine the production of gravitational waves by bubble collisions during a first-order phase transition. The spectrum of the gravitational radiation is determined by numerical simulations using the "envelope approximation". We find that the spectrum rises as f^3.0 for small frequencies and decreases as f^-1.0 for high frequencies. Thus, the fall-off at high frequencies is significantly slower than previously stated in the literature. This result has direct impact on detection prospects for gravity waves originating from a strong first-order electroweak phase transition at space-based interferometers, such as LISA or BBO. In addition, we observe a slight dependence of the peak frequency on the bubble wall velocity.

Cosmology and Gravitation TheoriesPulsars and Gravitational Waves ResearchBlack Holes and Theoretical PhysicsPhysicsGravitational waveBubbleElectroweak interactionPhase transitionEnvelope (radar)GravitationGravitational accelerationComputational physicsQuantum electrodynamics

Funding

  • Science and Technology Facilities Council
Citations
549
FWCI
9.46
field-weighted impact
References
32
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98%
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References
Detecting the cosmic gravitational wave background with the Big Bang Observer
Classical and Quantum Gravity · 2006 · 486 citations
Cosmic separation of phases
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1984 · 3,310 citations
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