English

On Mach's principle: Inertia as gravitation

General Relativity and Quantum Cosmology 2007-05-23 v1

Abstract

In order to test the validity of Mach's principle, we calculate the action of the entire universe on a test mass in its rest frame, which is an acceleration g{\bf g}^*. We show the dependence of the inertia principle on the lapse and the shift. Using the formalism of linearized gravitation, we obtain the non-relativistic limit of g{\bf g}^* in terms of two integrals. We follow then two approaches. In the first one, these integrals are calculated in the actual time section t=t0t=t_0 up to the distance RU=ct0R_U=ct_0. In the more exact and satisfactory second approach, they are calculated over the past light cone using the formalism of the retarded potentials. The aim is to find whether the acceleration v˙\dot{\bf v} in the LHS of Newton's second law can be interpreted as a reactive acceleration, in other words, as minus the acceleration of gravity g{\bf g}^* in the rest frame of the accelerated particle ({\it i. e.} to know whether or not g=v˙{\bf g}^*=-\dot{\bf v}). The results strongly support Mach's idea since the reactive acceleration for ΩΛ=0.7\Omega_\Lambda =0.7 turns out to be about g=1.1v˙{\bf g}^*=-1.1 \dot{\bf v}, in the first approach, and about g=0.7v˙{\bf g}^*= -0.7 \dot{\bf v}, in the second. These results depend little on ΩΛ\Omega_\Lambda if ΩΛ<0.9\Omega_\Lambda<0.9. Even considering the approximations and idealizations made during the calculations, we deem these results as interesting and encouraging.

Keywords

Cite

@article{arxiv.gr-qc/0703141,
  title  = {On Mach's principle: Inertia as gravitation},
  author = {J. Martin and Antonio F. Ranada and A. Tiemblo},
  journal= {arXiv preprint arXiv:gr-qc/0703141},
  year   = {2007}
}

Comments

17 pages, 2 figures