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Gravitational wave background from Standard Model physics: qualitative features

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BORIS DOI
10.7892/boris.71293
Publisher DOI
10.1088/1475-7516/2015/07/022
Description
Because of physical processes ranging from microscopic particle collisions to macroscopic hydrodynamic fluctuations, any plasma in thermal equilibrium emits gravitational waves. For the largest wavelengths the emission rate is proportional to the shear viscosity of the plasma. In the Standard Model at 0T > 16 GeV, the shear viscosity is dominated by the most weakly interacting particles, right-handed leptons, and is relatively large. We estimate the order of magnitude of the corresponding spectrum of gravitational waves. Even though at small frequencies (corresponding to the sub-Hz range relevant for planned observatories such as eLISA) this background is tiny compared with that from non-equilibrium sources, the total energy carried by the high-frequency part of the spectrum is non-negligible if the production continues for a long time. We suggest that this may constrain (weakly) the highest temperature of the radiation epoch. Observing the high-frequency part directly sets a very ambitious goal for future generations of GHz-range detectors.
Date of Publication
2015-07-16
Publication Type
Article
Subject(s)
500 Science > 530 Physics
Language(s)
en
Contributor(s)
Ghiglieri, Jacopo
Albert Einstein Center for Fundamental Physics (AEC)
Institut für theoretische Physik der Universität Bern (ITP)
Laine, Mikko Sakari
Institut für theoretische Physik der Universität Bern (ITP)
Additional Credits
Albert Einstein Center for Fundamental Physics (AEC)
Institut für theoretische Physik der Universität Bern (ITP)
Series
Journal of cosmology and astroparticle physics
Publisher
Institute of Physics Publishing IOP
ISSN
1475-7516
Access(Rights)
open.access
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