Cosmic strings in a braneworld theory with metastable gravitons

Arthur Lue
Phys. Rev. D 66, 043509 – Published 15 August 2002
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Abstract

If the graviton possesses an arbitrarily small (but nonvanishing) mass, perturbation theory implies that cosmic strings have a nonzero Newtonian potential. Nevertheless in Einstein gravity, where the graviton is strictly massless, the Newtonian potential of a cosmic string vanishes. This discrepancy is an example of the van Dam–Veltman–Zakharov (VDVZ) discontinuity. We present a solution for the metric around a cosmic string in a braneworld theory with a graviton metastable on the brane. This theory possesses those features that yield a VDVZ discontinuity in massive gravity, but nevertheless is generally covariant and classically self-consistent. Although the cosmic string in this theory supports a nontrivial Newtonian potential far from the source, one can recover the Einstein solution in a region near the cosmic string. That latter region grows as the graviton’s effective linewidth vanishes (analogous to a vanishing graviton mass), suggesting the lack of a VDVZ discontinuity in this theory. Moreover, the presence of scale dependent structure in the metric may have consequences for the search for cosmic strings through gravitational lensing techniques.

  • Received 11 December 2001

DOI:https://doi.org/10.1103/PhysRevD.66.043509

©2002 American Physical Society

Authors & Affiliations

Arthur Lue*

  • Department of Physics, New York University, New York, New York 10003

  • *Email address: lue@physics.nyu.edu

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Issue

Vol. 66, Iss. 4 — 15 August 2002

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