Hojman Symmetry in $f(T)$ Theory
Abstract
Today, theory has been one of the popular modified gravity theories to explain the accelerated expansion of the universe without invoking dark energy. In this work, we consider the so-called Hojman symmetry in theory. Unlike Noether conservation theorem, the symmetry vectors and the corresponding conserved quantities in Hojman conservation theorem can be obtained by using directly the equations of motion, rather than Lagrangian or Hamiltonian. We find that Hojman symmetry can exist in theory, and the corresponding exact cosmological solutions are obtained. We find that the functional form of is restricted to be the power-law or hypergeometric type, while the universe experiences a power-law or hyperbolic expansion. These results are different from the ones obtained by using Noether symmetry in theory. Therefore, it is reasonable to find exact cosmological solutions via Hojman symmetry.
Keywords
Cite
@article{arxiv.1505.07546,
title = {Hojman Symmetry in $f(T)$ Theory},
author = {Hao Wei and Ya-Nan Zhou and Hong-Yu Li and Xiao-Bo Zou},
journal= {arXiv preprint arXiv:1505.07546},
year = {2015}
}
Comments
10 pages, revtex4; v2: discussions added, Astrophys. Space Sci. in press; v3: published version