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20022009
most citedLIGO: The Laser Interferometer Gravitational-Wave Observatory

1.2k citations

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gr-qc200948 cited

Search for gravitational wave ringdowns from perturbed black holes in LIGO S4 data

The LIGO Scientific Collaboration, B. Abbott

According to general relativity a perturbed black hole will settle to a stationary configuration by the emission of gravitational radiation. Such a perturbation will occur, for exa…

gr-qc200946 cited

Template banks to search for compact binaries with spinning components in gravitational wave data

Chris Van Den Broeck, Duncan A. Brown, Thomas Cokelaer +5

Gravitational waves from coalescing compact binaries are one of the most promising sources for detectors such as LIGO, Virgo and GEO600. If the components of the binary posess sign…

gr-qc200951 cited

Comparison of high-accuracy numerical simulations of black-hole binaries with stationary phase post-Newtonian template waveforms for Initial and Advanced LIGO

Michael Boyle, Duncan A. Brown, Larne Pekowsky

We study the effectiveness of stationary-phase approximated post-Newtonian waveforms currently used by ground-based gravitational-wave detectors to search for the coalescence of bi…

gr-qc2009146 cited

Search for Gravitational Waves from Low Mass Binary Coalescences in the First Year of LIGO's S5 Data

LIGO Scientific Collaboration, B. Abbott

We have searched for gravitational waves from coalescing low mass compact binary systems with a total mass between 2 and 35 Msun and a minimum component mass of 1 Msun using data f…

gr-qc200896 cited

DC-readout of a signal-recycled gravitational wave detector

S. Hild, H. Grote, J. Degallaix +10

All first-generation large-scale gravitational wave detectors are operated at the dark fringe and use a heterodyne readout employing radio frequency (RF) modulation-demodulation te…

gr-qc2008385 cited

Model Waveform Accuracy Standards for Gravitational Wave Data Analysis

Lee Lindblom, Benjamin J. Owen, Duncan A. Brown

Model waveforms are used in gravitational wave data analysis to detect and then to measure the properties of a source by matching the model waveforms to the signal from a detector.…