Generalized Misner-Sharp Energy in f(R) Gravity
Abstract
We study generalized Misner-Sharp energy in gravity in a spherically symmetric spacetime. We find that unlike the cases of Einstein gravity and Gauss-Bonnet gravity, the existence of the generalized Misner-Sharp energy depends on a constraint condition in the gravity. When the constraint condition is satisfied, one can define a generalized Misner-Sharp energy, but it cannot always be written in an explicit quasi-local form. However, such a form can be obtained in a FRW universe and for static spherically symmetric solutions with constant scalar curvature. In the FRW universe, the generalized Misner-Sharp energy is nothing but the total matter energy inside a sphere with radius , which acts as the boundary of a finite region under consideration. The case of scalar-tensor gravity is also briefly discussed.
Cite
@article{arxiv.0910.2387,
title = {Generalized Misner-Sharp Energy in f(R) Gravity},
author = {Rong-Gen Cai and Li-Ming Cao and Ya-Peng Hu and Nobuyoshi Ohta},
journal= {arXiv preprint arXiv:0910.2387},
year = {2010}
}
Comments
Revtex, 17 pages, v2: some references added, to appear in PRD