English

DGP Brane as a Gravity Conductor

High Energy Physics - Theory 2009-11-07 v1 General Relativity and Quantum Cosmology

Abstract

We study how the DGP (Dvali-Gabadadze-Porrati) brane affects particle dynamics in linearized approximation. We find that once the particle is removed from the brane it is repelled to the bulk. Assuming that the cutoff for gravitational interaction is M1/ϵM_*\sim 1/\epsilon, we calculate the classical self energy of a particle as the function of its position. Since the particle wants to go to the region where its self energy is lower, it is repelled from the brane to the bulk where it gains its 5D self energy. Cases when mass of the particle m<8π2Mm<8\pi^2M_* and m>8π2Mm>8\pi^2M_* are qualitatively different, and in later case one has to take into account effects of strong gravity. In both cases the particle is repelled from the brane. For m<8π2Mm<8\pi^2M_* we obtain the same result from the 'electrostatic' analog of the theory. In that language mass (charge) in the bulk induces charge distribution on the brane which shields the other side of the brane and provides repulsive force. The DGP brane acts as a conducting plane in electrostatics (keeping in mind that in gravity different charges repel). The repulsive nature of the brane requires a certain localization mechanism. When the particle overcomes the localizing potential it rapidly moves to the bulk. Particles of mass m>8π2Mm>8\pi^2M_* form a black hole within 1/M1/M_* distance from the brane.

Keywords

Cite

@article{arxiv.hep-th/0203136,
  title  = {DGP Brane as a Gravity Conductor},
  author = {Marko Kolanovic},
  journal= {arXiv preprint arXiv:hep-th/0203136},
  year   = {2009}
}

Comments

13 pages, 3 figures