High Energy Physics - Theory
[Submitted on 5 Dec 2011 (v1), last revised 26 Aug 2013 (this version, v2)]
Title:Degravitation Features in the Cascading Gravity Model
View PDFAbstract:We obtain the effective gravitational equations on the codimension-2 and codimension-1 branes in the cascading gravity model. We then apply our formulation to the cosmological case and obtain the effective Friedmann equations on the codimension-2 brane, which are generically given in terms of integro-differential equations. Adopting an approximation for which the thickness of the codimension-2 brane is much smaller than the Hubble horizon, we study the Minkowski and de Sitter codimension-2 brane solutions. Studying the cosmological solutions shows that the cascading model exhibits the features necessary for degravitation of the cosmological constant. We also show that only the branch which does not have the smooth limit to the self-accelerating branch in five-dimensional model in the absence of the bulk gravity can satisfy the null energy condition as the criterion of the stability. Note that our solutions are obtained in a different setup from that of the original cascading gravity model in the sense that the codimension-1 brane contains matter fields other than the pure tension.
Submission history
From: Masato Minamitsuji [view email][v1] Mon, 5 Dec 2011 21:07:14 UTC (313 KB)
[v2] Mon, 26 Aug 2013 09:18:06 UTC (317 KB)
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