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The gravitational-wave signal GW150914 was first identified on Sept 14 2015 by searches for short-duration gravitational-wave transients.
Näherungsweise integration der feldgleichungen der gravitation
A. Einstein · 1916
Earlier work this paper cites.
Über gravitationswellen
A. Einstein · 1918
Earlier work this paper cites.
Gravitational Radiation and the Motion of Two Point Masses
P. C. Peters · 1964
Earlier work this paper cites.
A Simplex Method for Function Minimization
J. A. Nelder and R. Mead · 1965
Earlier work this paper cites.
In S. W. Hawking and W. Israel, editors, 300 Years of Gravitation
K. S. Thorne · 1987
Earlier work this paper cites.
A laser interferometer gravitational-wave observatory (LIGO)
R. W. P. Drever, F. J. Raab, K. S. Thorne, R. Vogt, and R. Weiss · 1989
Earlier work this paper cites.
Measuring gravitational waves from binary black hole coalescences: 2. The Waves’ information and its extraction, with and without templates
E. E. Flanagan and S. A. Hughes · 1998
Earlier work this paper cites.
An Excess power statistic for detection of burst sources of gravitational radiation
W. G. Anderson, P. R. Brady, J. D. E. Creighton, and E. E. Flanagan · 2001
Earlier work this paper cites.
Multiresolution techniques for the detection of gravitational-wave bursts
S. Chatterji, L. Blackburn, G. Martin, and E. Katsavounidis · 2004
Earlier work this paper cites.
Gravitational radiation from cosmic (super)strings: Bursts, stochastic background, and observational windows
Thibault Damour and Alexander Vilenkin · 2005
Earlier work this paper cites.
Constraint likelihood analysis for a network of gravitational wave detectors
S. Klimenko, S. Mohanty, M. Rakhmanov, and G. Mitselmakher · 2005
Earlier work this paper cites.
Nested Sampling for General Bayesian Computation
J. Skilling · 2006
Earlier work this paper cites.
Coherent method for detection of gravitational wave bursts
S. Klimenko, I. Yakushin, A. Mercer, and Guenakh Mitselmakher · 2008
Earlier work this paper cites.
The upgrade of GEO600
Harald Luck et al · 2010
Earlier work this paper cites.
All-sky search for gravitational-wave bursts in the first joint LIGO-GEO-Virgo run
J. Abadie et al · 2010
Earlier work this paper cites.
Intrinsic selection biases of ground-based gravitational wave searches for high-mass BH-BH mergers
R. O’Shaughnessy, B. Vaishnav, J. Healy, and D. Shoemaker · 2010
Earlier work this paper cites.
Gravitational waves from gravitational collapse
C. L. Fryer and K. C. B. New · 2011
Earlier work this paper cites.
Exploring the Use of Numerical Relativity Waveforms in Burst Analysis of Precessing Black Hole Mergers
S. Fischetti, J. Healy, L. Cadonati, L. London, S. R. P. Mohapatra, and D. Shoemaker · 2011
Earlier work this paper cites.
All-sky search for gravitational-wave bursts in the second joint LIGO-Virgo run
J. Abadie et al · 2012
Earlier work this paper cites.
Transient analysis with fast wilson-daubechies time-frequency transform
V. Necula, S. Klimenko, and G. Mitselmakher · 2012
Earlier work this paper cites.
FINDCHIRP: An Algorithm for detection of gravitational waves from inspiraling compact binaries
B. Allen, W. G. Anderson, P. R. Brady, D. A. Brown, and J. D. E. Creighton · 2012
Cited alongside, same era.
Interferometer design of the KAGRA gravitational wave detector
Y. Aso, Y. Michimura, K. Somiya, M. Ando, O. Miyakawa, T. Sekiguchi, D. Tatsumi, and H. Yamamoto · 2013
Cited alongside, same era.
J. Aasi et al · 2013
Cited alongside, same era.
The Transient Gravitational-Wave Sky
N. Andersson et al · 2013
Cited alongside, same era.
Comparing gravitational waves from nonprecessing and precessing black hole binaries in the corotating frame
L. Pekowsky, R. O’Shaughnessy, J. Healy, and D. Shoemaker · 2013
Cited alongside, same era.
S. Klimenko, G. Vedovato, M. Drago, F. Salemi, V. Tiwari, G. A. Prodi, C. Lazzaro, S. Tiwari, F. Da Silva, and G. Mitselmakher · 2015
Later among the works it cites.
BayesWave: Bayesian Inference for Gravitational Wave Bursts and Instrument Glitches
N. J. Cornish and T. B. Littenberg · 2015
Later among the works it cites.
Omicron: an algorithm to detect and characterize transient noise in gravitational-wave detectors
F. Robinet · 2015
Later among the works it cites.
Parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
J. Veitch et al · 2015
Later among the works it cites.
Bayesian inference for spectral estimation of gravitational wave detector noise
T. B. Littenberg and N. J. Cornish · 2015
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Precession during merger: Strong polarization changes are observationally accessible features of strong-field gravity during binary black hole merger
R. O’Shaughnessy, L. London, J. Healy, and D. Shoemaker · 2013
Cited alongside, same era.
Impact of higher-order modes on the detection of binary black hole coalescences
L. Pekowsky, J. Healy, D. Shoemaker, and P. Laguna · 2013
Cited alongside, same era.
Template mode hierarchies for binary black hole mergers
J. Healy, P. Laguna, L. Pekowsky, and D. Shoemaker · 2013
Cited alongside, same era.
Search for gravitational radiation from intermediate mass black hole binaries in data from the second LIGO-Virgo joint science run
J. Aasi et al · 2014
Cited alongside, same era.
Sensitivity Comparison of Searches for Binary Black Hole Coalescences with Ground-based Gravitational-Wave Detectors
S. Mohapatra, L. Cadonati, S. Caudill, J. Clark, C. Hanna, S. Klimenko, C. Pankow, R. Vaulin, G. Vedovato, and S. Vitale · 2014
Cited alongside, same era.
Search for gravitational radiation from intermediate mass black hole binaries in data from the second LIGO-Virgo joint science run
J. Aasi et al · 2014
Cited alongside, same era.
Effective-one-body model for black-hole binaries with generic mass ratios and spins
A. Taracchini et al · 2014
Cited alongside, same era.
Accuracy and precision of gravitational-wave models of inspiraling neutron star-black hole binaries with spin: Comparison with matter-free numerical relativity in the low-frequency regime
P. Kumar, K. Barkett, S. Bhagwat, N. Afshari, D. A. Brown, G. Lovelace, M. A. Scheel, and B. Szilágyi · 2015
Later among the works it cites.
Localization of short duration gravitational-wave transients with the early advanced LIGO and Virgo detectors
R. Essick, S. Vitale, E. Katsavounidis, G. Vedovato, and S. Klimenko · 2015
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GW150914: The Advanced LIGO Detectors in the Era of First Discoveries
B. P. Abbott et al · 2016
Closest in time.
Leveraging waveform complexity for confident detection of gravitational waves
J. B. Kanner, T. B. Littenberg, N. Cornish, M. Millhouse, E. Xhakaj, F. Salemi, M. Drago, G. Vedovato, and S. Klimenko · 2016
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Observation of gravitational waves from a binary black hole merger
B. P. Abbott et al · 2016
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Characterization of transient noise in Advanced LIGO relevant to gravitational wave signal GW150914
B. P. Abbott et al · 2016
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Localization and broadband follow-up of the gravitational-wave transient GW150914
B. Abbott et al · 2016
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Properties of the binary black hole merger GW150914
B. P. Abbott et al · 2016
Closest in time.
GW150914: First results from the search for binary black hole coalescence with Advanced LIGO
B. P. Abbott et al · 2016
Closest in time.
B. P. Abbott et al · 2016
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Reconstruction of chirp mass in searches for gravitational wave transients
V. Tiwari, S. Klimenko, V. Necula, and G. Mitselmakher · 2016
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Tests of general relativity with GW150914
B. P. Abbott et al · 2016
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Directly comparing GW150914 with numerical relativity
B. Abbott et al · 2016
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Numerical relativity injection infrastructure
P. Schmidt, I. W. Harry, and H. P. Pfeiffer · 2016
Closest in time.