From an Action Principle for Action-dependent Lagrangians toward non-conservative Gravity: accelerating Universe without dark energy
Abstract
In the present work, we propose an Action Principle for Action-dependent Lagrangians by generalizing the Herglotz variational problem for several independent variables. This Action Principle enables us to formulate Lagrangian densities for non-conservative fields. In special, from a Lagrangian depending linearly on the Action, we obtain a generalized Einstein's field equations for a non-conservative gravity and analyze some consequences of their solutions to cosmology and gravitational waves. We show that the non-conservative part of the field equations depends on a constant cosmological four-vector. Depending on this four-vector, the theory displays damped/amplified gravitational waves and an accelerating Universe without dark energy.
Keywords
Cite
@article{arxiv.1705.04604,
title = {From an Action Principle for Action-dependent Lagrangians toward non-conservative Gravity: accelerating Universe without dark energy},
author = {Matheus J. Lazo and Juilson Paiva and João T. S. Amaral and Gastão S. F. Frederico},
journal= {arXiv preprint arXiv:1705.04604},
year = {2017}
}
Comments
accepted for publication as a Rapid Communication in Physical Review D