Third post-Newtonian angular momentum flux and the secular evolution of orbital elements for inspiralling compact binaries in quasi-elliptical orbits


Autoria(s): Arun, KG; Blanchet, Luc; Iyer, Bala R; Sinha, Siddhartha
Data(s)

01/12/2009

Resumo

The angular-momentum flux from an inspiralling binary system of compact objects moving in quasi-elliptical orbits is computed at the third post-Newtonian (3PN) order using the multipolar post-Minkowskian wave generation formalism. The 3PN angular-momentum flux involves the instantaneous, tail, and tail-of-tails contributions as for the 3PN energy flux, and in addition a contribution due to nonlinear memory. We average the angular-momentum flux over the binary's orbit using the 3PN quasi-Keplerian representation of elliptical orbits. The averaged angular-momentum flux provides the final input needed for gravitational-wave phasing of binaries moving in quasi-elliptical orbits. We obtain the evolution of orbital elements under 3PN gravitational radiation reaction in the quasi-elliptic case. For small eccentricities, we give simpler limiting expressions relevant for phasing up to order e(2). This work is important for the construction of templates for quasi-eccentric binaries, and for the comparison of post-Newtonian results with the numerical relativity simulations of the plunge and merger of eccentric binaries.

Formato

application/pdf

Identificador

http://eprints.iisc.ernet.in/25426/1/24.pdf

Arun, KG and Blanchet, Luc and Iyer, Bala R and Sinha, Siddhartha (2009) Third post-Newtonian angular momentum flux and the secular evolution of orbital elements for inspiralling compact binaries in quasi-elliptical orbits. In: Physical Review D, 80 (12).

Publicador

American Institute of Physics

Relação

http://prd.aps.org/abstract/PRD/v80/i12/e124018

http://eprints.iisc.ernet.in/25426/

Palavras-Chave #Physics
Tipo

Journal Article

PeerReviewed