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On the origin of brane cosmological constant in two-brane warped geometry model

Published 4 Apr 2012 in hep-th, gr-qc, and hep-ph | (1204.0886v1)

Abstract: In the backdrop of generalised Randall-Sundrum braneworld scenario, we look for the possible origin of an effective four dimensional cosmological constant (Ωvis\Omega_{vis}) on the visible 3-brane due to the effects of bulk curvature and the modulus field that can either be a constant or dependent on extra dimensional co-ordinate yy or a time dependent quantity. In case of constant or yy dependent modulus field, the induced Ωvis\Omega_{vis} leads to an exponentially expanding Universe. For such modulus fields the presence of vacuum energy densities on either of the 3-branes as well as a non-vanishing bulk curvature ll (l∼Λ5<sup>−1l \sim {\Lambda_5}<sup>{-1}) are essential to generate an effective Ωvis\Omega_{vis}. In particular for constant modulus field the Hubble constant turns out to be equal to the visible brane cosmological constant which agrees with the present result. In an alternative scenario, a time dependent modulus field is found to be capable of accelerating the Universe. The Hubble parameter in this case is determined for a slowly time-varying modulus field.

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