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We summarize the sensitivity achieved by the LIGO and Virgo gravitational wave detectors for compact binary coalescence (CBC) searches during LIGO's fifth science run and Virgo's first science run.
Observing binary inspiral in gravitational radiation: One interferometer
Lee Samuel Finn and David F. Chernoff · 1993
Earlier work this paper cites.
Class. Quantum Grav
F. Acernese, et. al · 2008
Earlier work this paper cites.
LIGO: The Laser Interferometer Gravitational-Wave Observatory, 2009
The LIGO Scientific Collaboration: B. Abbott, et. al · 2009
Cited alongside, same era.
E. Goetz, et. al · 2009
Cited alongside, same era.
See lines 964-990 in the lalapps tmpltbank source code at http://www.lsc-group.phys.uwm.edu/cgit/lalsuite/tree/lalapps/src/inspiral/tmpltbank.c and the function compute_candle_distance in lines 86-119 from http://www.lsc-group.phys.uwm.edu/cgit/lalsuite/tree/lalapps/src/inspiral/inspiralutils.c
Cited in the paper.
Range and Duty Cycle
Daniel Sigg
Cited in the paper.
http://touro.ligo-la.caltech.edu/ ∼ \sim irish/Work/Calibration/S5V4Review/Overview.html
Cited in the paper.
FINDCHIRP: an algorithm for detection of gravitational waves from inspiraling compact binaries
Bruce Allen, Warren G. Anderson, Patrick R. Brady, Duncan A. Brown, and Jolien D. E. Creighton
Cited in the paper.
h ( t ) h(t) reconstruction for VSR1; Version 2 and 3
F. Marion, B. Mours, and L. Rolland · 2092
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