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Science with the space-based interferometer LISA. IV: probing inflation with gravitational waves

Journal of Cosmology and Astroparticle Physics · 2016 · Vol. 2016(12) · pp. 026–026
Nicola BartoloChiara CapriniValerie DomckeDaniel G. FigueroaJ. García-BellidoMaria Chiara GuzzettiM. LiguoriS. MatarreseMarco PelosoAntoine PetiteauAngelo RicciardoneMairi SakellariadouLorenzo SorboGianmassimo Tasinato

Abstract

We investigate the potential for the LISA space-based interferometer to detect the stochastic gravitational wave background produced from different mechanisms during inflation. Focusing on well-motivated scenarios, we study the resulting contributions from particle production during inflation, inflationary spectator fields with varying speed of sound, effective field theories of inflation with specific patterns of symmetry breaking and models leading to the formation of primordial black holes. The projected sensitivities of LISA are used in a model-independent way for various detector designs and configurations. We demonstrate that LISA is able to probe these well-motivated inflationary scenarios beyond the irreducible vacuum tensor modes expected from any inflationary background.

Cosmology and Gravitation TheoriesPulsars and Gravitational Waves ResearchGeophysics and Gravity MeasurementsPhysicsInflation (cosmology)Gravitational waveTheoretical physicsInterferometryCosmologyParameter spaceTensor (intrinsic definition)Field (mathematics)Space (punctuation)

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • University of Minnesota
  • Universitetet i Stavanger
  • Agence Nationale de la Recherche
  • Science and Technology Facilities Council
  • Labex UnivEarthS
Citations
414
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225
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Astronomy and Astrophysics · 2014 · 1,058 citations
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