Searching for gravitational waves from the inspiral of precessing binary systems:: New hierarchical scheme using "spiky" templates -: art. no. 082002

被引:15
|
作者
Grandclément, P [1 ]
Kalogera, V [1 ]
机构
[1] Northwestern Univ, Dept Phys & Astron, Evanston, IL 60208 USA
关键词
D O I
10.1103/PhysRevD.67.082002
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In a recent investigation of the effects of precession on the anticipated detection of gravitational-wave inspiral signals from compact object binaries with moderate total masses less than or similar to10 M-circle dot, we found that (i) if precession is ignored, the inspiral detection rate can decrease by almost a factor of 10, and (ii) previously proposed "mimic" templates cannot improve the detection rate significantly (by more than a factor of 2). In this paper we propose a new family of templates that can improve the detection rate by a factor of 5 or 6 in cases where precession is most important. Our proposed method for these new "mimic" templates involves a hierarchical scheme of efficient, two-parameter template searches that can account for a sequence of spikes that appear in the residual inspiral phase, after one corrects for any oscillatory modification in the phase. We present our results for two cases of compact object masses (10 and 1.4 M-circle dot and 7 and 3 M-circle dot) as a function of spin properties. Although further work is needed to fully assess the computational efficiency of this newly proposed template family, we conclude that these "spiky templates" are good candidates for a family of precession templates used in realistic searches that can improve detection rates of inspiral events.
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页数:12
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    Grandclément, P
    Ihm, M
    Kalogera, V
    Belczynski, K
    [J]. PHYSICAL REVIEW D, 2004, 69 (10):
  • [2] Searching for gravitational waves from the inspiral of precessing binary systems:: Problems with current waveforms -: art. no. 042003
    Grandclément, P
    Kalogera, V
    Vecchio, A
    [J]. PHYSICAL REVIEW D, 2003, 67 (04):
  • [3] Search for gravitational waves from primordial black hole binary coalescences in the galactic halo -: art. no. 082002
    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
    [J]. PHYSICAL REVIEW D, 2005, 72 (08)
  • [4] Obtaining gravitational waves from inspiral binary systems using LIGO data
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    Claudia Moreno
    [J]. The European Physical Journal Plus, 132
  • [5] Obtaining gravitational waves from inspiral binary systems using LIGO data
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    Moreno, Claudia
    [J]. EUROPEAN PHYSICAL JOURNAL PLUS, 2017, 132 (01):
  • [6] Gravitational dipole radiations from binary systems -: art. no. 024040
    Gérard, JM
    Wiaux, Y
    [J]. PHYSICAL REVIEW D, 2002, 66 (02)
  • [7] Erratum to: Obtaining gravitational waves from inspiral binary systems using LIGO data
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    Claudia Moreno
    [J]. The European Physical Journal Plus, 132
  • [8] Analysis of LIGO data for gravitational waves from binary neutron stars -: art. no. 122001
    Abbott, B
    Abbott, R
    Adhikari, R
    Ageev, A
    Allen, B
    Amin, R
    Anderson, SB
    Anderson, WG
    Araya, M
    Armandula, H
    Asiri, F
    Aufmuth, P
    Aulbert, C
    Babak, S
    Balasubramanian, R
    Ballmer, S
    Barish, BC
    Barker, D
    Barker-Patton, C
    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
    Bland-Weaver, B
    Bochner, B
    Bogue, L
    Bork, R
    Bose, S
    Brady, PR
    Braginsky, VB
    Brau, JE
    Brown, DA
    Brozek, S
    Bullington, A
    Buonanno, A
    Burgess, R
    Busby, D
    Butler, WE
    Byer, RL
    Cadonati, L
    [J]. PHYSICAL REVIEW D, 2004, 69 (12)
  • [9] Search for gravitational waves from galactic and extra-galactic binary neutron stars -: art. no. 082001
    Abbott, B
    Abbott, R
    Adhikari, R
    Ageev, A
    Allen, B
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    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
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    Brown, DA
    Bullington, A
    Bunkowski, A
    Buonanno, A
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    Busby, D
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    [J]. PHYSICAL REVIEW D, 2005, 72 (08)
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    [J]. EUROPEAN PHYSICAL JOURNAL PLUS, 2017, 132 (02):