English

Improved filters for gravitational waves from inspiralling compact binaries

General Relativity and Quantum Cosmology 2009-10-30 v1

Abstract

The order of the post-Newtonian expansion needed, to extract in a reliable and accurate manner the fully general relativistic gravitational wave signal from inspiralling compact binaries, is explored. A class of approximate wave forms, called P-approximants, is constructed based on the following two inputs: (a) The introduction of two new energy-type and flux-type functions e(v) and f(v), respectively, (b) the systematic use of Pade approximation for constructing successive approximants of e(v) and f(v). The new P-approximants are not only more effectual (larger overlaps) and more faithful (smaller biases) than the standard Taylor approximants, but also converge faster and monotonically. The presently available O(v/c)^5-accurate post-Newtonian results can be used to construct P-approximate wave forms that provide overlaps with the exact wave form larger than 96.5% implying that more than 90% of potential events can be detected with the aid of P-approximants as opposed to a mere 10-15 % that would be detectable using standard post-Newtonian approximants.

Keywords

Cite

@article{arxiv.gr-qc/9708034,
  title  = {Improved filters for gravitational waves from inspiralling compact binaries},
  author = {Thibault Damour and Bala R. Iyer and B. S. Sathyaprakash},
  journal= {arXiv preprint arXiv:gr-qc/9708034},
  year   = {2009}
}

Comments

Latex ([prd,aps,eqsecnum,epsf]{revtex}), 40 pages including 12 encapsulated figures. (The paper, together with all the figures and tables is available from ftp://carina.astro.cf.ac.uk/pub/incoming/sathya/dis97.uu)

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