Papers
Topics
Authors
Recent
2000 character limit reached

Constraining the mass of the graviton using coalescing black-hole binaries (1004.0284v3)

Published 2 Apr 2010 in gr-qc, astro-ph.CO, and astro-ph.HE

Abstract: We study how well the mass of the graviton can be constrained from gravitational-wave (GW) observations of coalescing binary black holes. Whereas the previous investigations employed post-Newtonian (PN) templates describing only the inspiral part of the signal, the recent progress in analytical and numerical relativity has provided analytical waveform templates coherently describing the inspiral-merger-ringdown (IMR) signals. We show that a search for binary black holes employing IMR templates will be able to constrain the mass of the graviton much more accurately (about an order of magnitude) than a search employing PN templates. The best expected bound from GW observatories (lambda_g > 7.8 x 1013 km from Adv. LIGO, lambda_g > 7.1 x 1014 km from Einstein Telescope, and lambda_g > 5.9 x 1017 km from LISA) are several orders-of-magnitude better than the best available model-independent bound (lambda_g > 2.8 x 1012 km, from Solar system tests). Most importantly, GW observations will provide the first constraints from the highly dynamical, strong-field regime of gravity.

Summary

We haven't generated a summary for this paper yet.

Whiteboard

Paper to Video (Beta)

Open Problems

We haven't generated a list of open problems mentioned in this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.

Authors (2)

Collections

Sign up for free to add this paper to one or more collections.