POST-NEWTONIAN HYDRODYNAMICS AND POST-NEWTONIAN GRAVITATIONAL-WAVE GENERATION FOR NUMERICAL RELATIVITY

被引:177
|
作者
BLANCHET, L
DAMOUR, T
SCHAFER, G
机构
[1] INST HAUTES ETUD SCI,F-91440 BURES SUR YVETTE,FRANCE
[2] MAX PLANCK INST PHYS & ASTROPHYS,W-8046 GARCHING,GERMANY
关键词
D O I
10.1093/mnras/242.3.289
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present an approximate formalism for the equations of evolution of a moderately relativistic self-gravitating fluid which takes into account the dominant (quantitative and qualitative) new effects entailed by Einstein's theory. This (first plus second-and-a-half) post-Newtonian scheme is equivalent to known results of the literature, but casts them in an explicitly 'quasi-Newtonian' form, so that it becomes as easy to implement on a computer as a Newtonian-gravity code for non-relativistic hydrodynamics (in particular, all the relativistic non-localities are reduced to Poisson equations with compact-supported sources). We complete this scheme by a correspondingly accurate post-Newtonian gravitational waveform extraction formalism which goes beyond the 'standard quadrupole equation' in including the first relativistic corrections to the emission of gravitational radiation in a form which can be easily implemented numerically. We view our formalisms as simple and robust tools allowing one, with only a minimal computer investment, to study the most important quantitative and qualitative characteristics of the three-dimensional gravitational dynamics, and wave generation, of a wide range of semi-relativistic sources, such as the collapse of a star to the neutron star stage, or the coalescence of neutron star binaries. © Royal Astronomical Society.
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页码:289 / 305
页数:17
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