Takahashi, TomoDepartment of Physics, Saga University, Saga 840-8502, Japan
Author
Yamaguchi, MasahideDepartment of Physics, Tokyo Institute of Technology, Tokyo 152-8551, Japan
Author
Yokoyama, ShuichiroDepartment of Physics and Astrophysics, Nagoya University, Aichi 464-8602, Japan
Author
Abstract
In this talk, we have shown that current cosmic acceleration can be explained by an almost massless scalar field experiencing quantum fluctuations during primordial inflation. Provided its mass does not exceed the Hubble parameter today, this field has been frozen during the cosmological ages to start dominating the universe only recently. By using supernovae data, completed with baryonic acoustic oscillations from galaxy surveys and cosmic microwave background anisotropies, we infer the energy scale of primordial inflation to be around a few TeV, which implies a negligible tensor-to-scalar ratio of the primordial fluctuations. Moreover, our model suggests that inflation lasted for an extremely long period. Dark energy could therefore be a natural consequence of cosmic inflation close to the electroweak energy scale.
Department of Physics, Saga University, Saga 840-8502, Japan
Department of Physics, Tokyo Institute of Technology, Tokyo 152-8551, Japan
Department of Physics and Astrophysics, Nagoya University, Aichi 464-8602, Japan
Citations
APA
Chicago
FWB
Ringeval, C., Suyama, T., Takahashi, T., Yamaguchi, M., & Yokoyama, S. (2010). Relation between inflation and dark energy. Journal of Physics: Conference Series, 259(1), 12082. https://doi.org/10.1088/1742-6596/259/1/012082 (Original work published 2010)