Learning about compact binary merger: The interplay between numerical relativity and gravitational-wave astronomy

被引:18
作者
Baumgarte, Thomas [1 ,2 ]
Brady, Patrick R. [3 ]
Creighton, Jolien D. E. [3 ]
Lehner, Luis [4 ]
Pretorius, Frans [5 ,6 ,7 ]
DeVoe, Ricky [8 ]
机构
[1] Bowdoin Coll, Dept Phys & Astron, Brunswick, ME 04011 USA
[2] Univ Illinois, Dept Phys, Urbana, IL 61801 USA
[3] Univ Wisconsin, Dept Phys, Milwaukee, WI 53201 USA
[4] Louisiana State Univ, Dept Phys & Astron, Baton Rouge, LA 70810 USA
[5] Univ Alberta, Dept Phys, Edmonton, AB T6G 2G7, Canada
[6] Canadian Inst Adv Res, Cosmol & Grav Program, Toronto, ON, Canada
[7] Princeton Univ, Dept Phys, Princeton, NJ 08540 USA
[8] Beloit Coll, Beloit, WI 53511 USA
来源
PHYSICAL REVIEW D | 2008年 / 77卷 / 08期
关键词
D O I
10.1103/PhysRevD.77.084009
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Activities in data analysis and numerical simulation of gravitational waves have to date largely proceeded independently. In this work we study how waveforms obtained from numerical simulations could be effectively used within the data analysis effort to search for gravitational waves from black hole binaries. To this end we analyze the cross-correlation between different numerical waveforms weighted by the detector's noise. This allow us to propose measures to quantify the accuracy of numerical waveforms for the purpose of data analysis, study how sensitive the analysis is to errors in the waveforms, and propose a way to efficiently encode the waveform's information for its use as a member of the template bank. We estimate that similar to 100 templates (and similar to 10 simulations with different mass ratios) are needed to detect waves from nonspinning binary black holes with total masses in the range 100M(circle dot) <= M <= 400M(circle dot) using initial LIGO. Of course, many more simulation runs will be needed to confirm that the correct physics is captured in the numerical evolutions. From this perspective, we also discuss sources of systematic errors in numerical waveform extraction and provide order of magnitude estimates for the computational cost of simulations that could be used to estimate the cost of parameter space surveys. Finally, we discuss what information from near-future numerical simulations of compact binary systems would be most useful for enhancing the detectability of such events with contemporary gravitational-wave detectors and emphasize the role of numerical simulations for the interpretation of eventual gravitational-wave observations.
引用
收藏
页数:19
相关论文
共 69 条
[1]   Joint LIGO and TAMA300 search for gravitational waves from inspiralling neutron star binaries [J].
Abbott, B. ;
Abbott, R. ;
Adhikari, R. ;
Ageev, A. ;
Agresti, J. ;
Ajith, P. ;
Allen, B. ;
Allen, J. ;
Amin, R. ;
Anderson, S. B. ;
Anderson, W. G. ;
Araya, M. ;
Armandula, H. ;
Ashley, M. ;
Asiri, F. ;
Aufmuth, P. ;
Aulbert, C. ;
Babak, S. ;
Balasubramanian, R. ;
Ballmer, S. ;
Barish, B. C. ;
Barker, C. ;
Barker, D. ;
Barnes, M. ;
Barr, B. ;
Barton, M. A. ;
Bayer, K. ;
Beausoleil, R. ;
Belczynski, K. ;
Bennett, R. ;
Berukoff, S. J. ;
Betzwieser, J. ;
Bhawal, B. ;
Bilenko, I. A. ;
Billingsley, G. ;
Black, E. ;
Blackburn, K. ;
Blackburn, L. ;
Bland, B. ;
Bochner, B. ;
Bogue, L. ;
Bork, R. ;
Bose, S. ;
Brady, P. R. ;
Braginsky, V. B. ;
Brau, J. E. ;
Brown, D. A. ;
Bullington, A. ;
Bunkowski, A. ;
Buonanno, A. .
PHYSICAL REVIEW D, 2006, 73 (10)
[2]   Search for gravitational waves from galactic and extra-galactic binary neutron stars -: art. no. 082001 [J].
Abbott, B ;
Abbott, R ;
Adhikari, R ;
Ageev, A ;
Allen, B ;
Amin, R ;
Anderson, SB ;
Anderson, WG ;
Araya, M ;
Armandula, H ;
Ashley, M ;
Asiri, F ;
Aufmuth, P ;
Aulbert, C ;
Babak, S ;
Balasubramanian, R ;
Ballmer, S ;
Barish, BC ;
Barker, C ;
Barker, D ;
Barnes, M ;
Barr, B ;
Barton, MA ;
Bayer, K ;
Beausoleil, R ;
Belczynski, K ;
Bennett, R ;
Berukoff, SJ ;
Betzwieser, J ;
Bhawal, B ;
Bilenko, IA ;
Billingsley, G ;
Black, E ;
Blackburn, K ;
Blackburn, L ;
Bland, B ;
Bochner, B ;
Bogue, L ;
Bork, R ;
Bose, S ;
Brady, PR ;
Braginsky, VB ;
Brau, JE ;
Brown, DA ;
Bullington, A ;
Bunkowski, A ;
Buonanno, A ;
Burgess, R ;
Busby, D ;
Butler, WE .
PHYSICAL REVIEW D, 2005, 72 (08)
[3]   Search for gravitational waves from binary black hole inspirals in LIGO data [J].
Abbott, B ;
Abbott, R ;
Adhikari, R ;
Ageev, A ;
Agresti, J ;
Ajith, P ;
Allen, B ;
Allen, J ;
Amin, R ;
Anderson, SB ;
Anderson, WG ;
Araya, M ;
Armandula, H ;
Ashley, M ;
Asiri, F ;
Aufmuth, P ;
Aulbert, C ;
Babak, S ;
Balasubramanian, R ;
Ballmer, S ;
Barish, BC ;
Barker, C ;
Barker, D ;
Barnes, M ;
Barr, B ;
Barton, MA ;
Bayer, K ;
Beausoleil, R ;
Belczynski, K ;
Bennett, R ;
Berukoff, SJ ;
Betzwieser, J ;
Bhawal, B ;
Bilenko, IA ;
Billingsley, G ;
Black, E ;
Blackburn, K ;
Blackburn, L ;
Bland, B ;
Bochner, B ;
Bogue, L ;
Bork, R ;
Bose, S ;
Brady, PR ;
Braginsky, VB ;
Brau, JE ;
Brown, DA ;
Bullington, A ;
Bunkowski, A ;
Buonanno, A .
PHYSICAL REVIEW D, 2006, 73 (06)
[4]   Search for gravitational waves associated with the gamma ray burst GRB030329 using the LIGO detectors -: art. no. 042002 [J].
Abbott, B ;
Abbott, R ;
Adhikari, R ;
Ageev, A ;
Allen, B ;
Amin, R ;
Anderson, SB ;
Anderson, WG ;
Araya, M ;
Armandula, H ;
Ashley, M ;
Asiri, F ;
Aufmuth, P ;
Aulbert, C ;
Babak, S ;
Balasubramanian, R ;
Ballmer, S ;
Barish, BC ;
Barker, C ;
Barker, D ;
Barnes, M ;
Barr, B ;
Barton, MA ;
Bayer, K ;
Beausoleil, R ;
Belczynski, K ;
Bennett, R ;
Berukoff, SJ ;
Betzwieser, J ;
Bhawal, B ;
Bilenko, IA ;
Billingsley, G ;
Black, E ;
Blackburn, K ;
Blackburn, L ;
Bland, B ;
Bochner, B ;
Bogue, L ;
Bork, R ;
Bose, S ;
Brady, PR ;
Braginsky, VB ;
Brau, JE ;
Brown, DA ;
Bullington, A ;
Bunkowski, A ;
Buonanno, A ;
Burgess, R ;
Busby, D ;
Butler, WE .
PHYSICAL REVIEW D, 2005, 72 (04) :1-17
[5]   Applying black hole perturbation theory to numerically generated spacetimes [J].
Abrahams, AM ;
Price, RH .
PHYSICAL REVIEW D, 1996, 53 (04) :1963-1971
[6]  
ANDERSON MW, UNPUB
[7]   Excess power statistic for detection of burst sources of gravitational radiation -: art. no. 042003 [J].
Anderson, WG ;
Brady, PR ;
Creighton, JDE ;
Flanagan, ÉÉ .
PHYSICAL REVIEW D, 2001, 63 (04) :420031-4200320
[8]   SEARCH TEMPLATES FOR GRAVITATIONAL-WAVES FROM PRECESSING, INSPIRALING BINARIES [J].
APOSTOLATOS, TA .
PHYSICAL REVIEW D, 1995, 52 (02) :605-620
[9]   The Lazarus project: A pragmatic approach to binary black hole evolutions [J].
Baker, J ;
Campanelli, M ;
Lousto, CO .
PHYSICAL REVIEW D, 2002, 65 (04)
[10]   Gravitational-wave extraction from an inspiraling configuration of merging black holes [J].
Baker, JG ;
Centrella, J ;
Choi, DI ;
Koppitz, M ;
van Meter, J .
PHYSICAL REVIEW LETTERS, 2006, 96 (11)