Published September 15, 2013 | Version Published + Accepted Version
Journal Article Open

Gravitational waveforms for precessing, quasicircular compact binaries with multiple scale analysis: Small spin expansion

  • 1. ROR icon Montana State University

Abstract

We obtain analytical gravitational waveforms in the frequency domain for precessing, quasicircular compact binaries with small spins, applicable, for example, to binary neutron star inspirals. We begin by calculating an analytic solution to the precession equations, obtained by expanding in the dimensionless spin parameters and using multiple-scale analysis to separate time scales. We proceed by analytically computing the Fourier transform of time-domain waveform through the stationary phase approximation. We show that the latter is valid for systems with small spins. Finally, we show that these waveforms have a high overlap with numerical waveforms obtained through direct integration of the precession equations and discrete Fourier transformations. The resulting, analytic waveform family is ideal for detection and parameter estimation of gravitational waves emitted by inspiraling binary neutron stars with ground-based detectors.

Additional Information

© 2013 American Physical Society. Received 16 July 2013; published 27 September 2013. We thank Luc Blanchet for useful discussions on PN theory. K. C. and N. Y. acknowledge support from NSF Grant No. PHY-1114374 and NASA Grant No. NNX11AI49G, under subaward 00001944. A. K. and N. C. acknowledge support from the NSF Grant No. PHY-1205993 and NASA Grant No. NNX10AH15G.

Attached Files

Published - PhysRevD.88.063011.pdf

Accepted Version - 1307.4418.pdf

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1307.4418.pdf

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Additional details

Identifiers

Eprint ID
104746
Resolver ID
CaltechAUTHORS:20200805-084307308

Related works

Funding

NSF
PHY-1114374
NASA
NNX11AI49G
NASA
00001944
NSF
PHY-1205993
NASA
NNX10AH15G

Dates

Created
2020-08-05
Created from EPrint's datestamp field
Updated
2021-11-16
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