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Screening of cosmological constant for de Sitter Universe in non-local gravity,phantom-divide crossing and finite-time future singularities
Authors:Kazuharu Bamba  Shin’ichi Nojiri  Sergei D. Odintsov  Misao Sasaki
Affiliation:1.Kobayashi-Maskawa Institute for the Origin of Particles and the Universe,Nagoya University,Nagoya,Japan;2.Department of Physics,Nagoya University,Nagoya,Japan;3.Instituciò Catalana de Recerca i Estudis Avan?ats (ICREA),Barcelona,Spain;4.Institut de Ciencies de l’Espai (IEEC-CSIC), Campus UAB, Facultat de Ciencies, Torre C5-Par-2a pl,Bellaterra,Spain;5.Tomsk State Pedagogical University,Tomsk,Russia;6.Yukawa Institute for Theoretical Physics,Kyoto University,Kyoto,Japan;7.Korea Institute for Advanced Study, 207-43 Cheongnyangni 2-dong,Dongdaemun-gu, Seoul,Republic of Korea
Abstract:We investigate de Sitter solutions in non-local gravity as well as in non-local gravity with Lagrange constraint multiplier. We examine a condition to avoid a ghost and discuss a screening scenario for a cosmological constant in de Sitter solutions. Furthermore, we explicitly demonstrate that three types of the finite-time future singularities can occur in non-local gravity and explore their properties. In addition, we evaluate the effective equation of state for the universe and show that the late-time accelerating universe may be effectively the quintessence, cosmological constant or phantom-like phases. In particular, it is found that there is a case in which a crossing of the phantom divide from the non-phantom (quintessence) phase to the phantom one can be realized when a finite-time future singularity occurs. Moreover, it is demonstrated that the addition of an R 2 term can cure the finite-time future singularities in non-local gravity. It is also suggested that in the framework of non-local gravity, adding an R 2 term leads to possible unification of the early-time inflation with the late-time cosmic acceleration.
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