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There are several common conventions in use by the gravitational-wave community to describe the amplitude of sources and the sensitivity of detectors.
Wiener N 1949 The extrapolation, interpolation and smoothing of stationary time series
1949
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Gravitational Radiation from Point Masses in a Keplerian Orbit
Peters P C and Mathews J 1963 · 1963
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Misner C W, Thorne K S and Wheeler J A 1973 Gravitation
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Upper limits on the isotropic gravitational radiation background from pulsar timing analysis
Hellings R W and Downs G S 1983 · 1983
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Thorne K S 1987 in
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Constructing a pulsar timing array
Foster R S and Backer D C 1990 · 1990
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Detection, measurement, and gravitational radiation
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Observing binary inspiral in gravitational radiation: One interferometer
Finn L S and Chernoff D F 1993 · 1993
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Gravitational waves from merging compact binaries: How accurately can one extract the binary’s parameters from the inspiral waveform?
Cutler C and Flanagan É E 1994 · 1994
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Detecting a stochastic background of gravitational radiation: Signal processing strategies and sensitivities
Allen B and Romano J D 1999 · 1999
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Gravitational waves from a compact star in a circular, inspiral orbit, in the equatorial plane of a massive, spinning black hole, as observed by LISA
Finn L S and Thorne K S 2000 · 2000
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Gravitational wave experiments and early universe cosmology
Maggiore M 2000 · 2000
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The gravitational wave signal from the Galactic disk population of binaries containing two compact objects
Nelemans G, Yungelson L R and Portegies Zwart S F 2001 · 2001
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Current status of TAMA
Ando M 2002 · 2002
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Relativistic simulations of rotational core collapse II. Collapse dynamics and gravitational radiation
Dimmelmeier H, Font J A and Müller E 2002 · 2002
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The Assembly and Merging History of Supermassive Black Holes in Hierarchical Models of Galaxy Formation
Volonteri M, Haardt F and Madau P 2003 · 2003
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Multiresolution techniques for the detection of gravitational-wave bursts
Chatterji S, Blackburn L, Martin G and Katsavounidis E 2004 · 2004
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Strong-field tests of gravity using pulsars and black holes
Kramer M et al. 2004 · 2004
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Gravitational radiation from cosmic (super)strings: Bursts, stochastic background, and observational windows
Damour T and Vilenkin A 2005 · 2005
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Supermassive Black Holes in Galactic Nuclei: Past, Present and Future Research
Ferrarese L and Ford H 2005 · 2005
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Relic gravitational waves and cosmology
Grishchuk L P 2005 · 2005
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Upper Bounds on the Low-Frequency Stochastic Gravitational Wave Background from Pulsar Timing Observations: Current Limits and Future Prospects
Jenet F A et al. 2006 · 2006
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Explosion mechanism, neutrino burst and gravitational wave in core-collapse supernovae
Kotake K, Sato K and Takahashi K 2006 · 2006
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The LISA verification binaries
Stroeer A and Vecchio A 2006 · 2006
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The GEO-HF project
Willke B et al. 2006 · 2006
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Searches for periodic gravitational waves from unknown isolated sources and Scorpius X-1: Results from the second LIGO science run
Abbott B et al. 2007 · 2007
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A Bayesian coincidence test for noise rejection in a gravitational-wave burst search
Cannon K C 2008 · 2008
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Physics of Neutron Star Crusts
Chamel N and Haensel P 2008 · 2008
Cited alongside, same era.
Modelling magnetically deformed neutron stars
Haskell B, Samuelsson L, Glampedakis K and Andersson N 2008 · 2008
Cited alongside, same era.
A coherent method for detection of gravitational wave bursts
Klimenko S, Yakushin I, Mercer A and Mitselmakher G 2008 · 2008
Cited alongside, same era.
Sesana A, Vecchio A and Colacino C N 2008 · 2008
Virgo: a laser interferometer to detect gravitational waves
Accadia T et al. 2012 · 2012
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Binétruy P, Bohé A, Caprini C and Dufaux J F 2012 · 2012
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The Nuclear Equation of State and Neutron Star Masses
Lattimer J M 2012 · 2012
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Detector configuration of KAGRA-the Japanese cryogenic gravitational-wave detector
Somiya K 2012 · 2012
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Non-sky-averaged sensitivity curves for space-based gravitational-wave observatories
Vallisneri M and Galley C R 2012 · 2012
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Cited alongside, same era.
LIGO: the Laser Interferometer Gravitational-Wave Observatory
Abbott B P et al. 2009 · 2009
Cited alongside, same era.
Acernese F et al. 2009 Advanced virgo baseline design Virgo Technical Report VIR-0027A-09. http://tds.ego-gw.it/itf/tds/file.php?callFile=VIR-0027A-09.pdf
2009
Cited alongside, same era.
Optimal strategies for gravitational wave stochastic background searches in pulsar timing data
Anholm M, Ballmer S, Creighton J D E, Price L R and Siemens X 2009 · 2009
Cited alongside, same era.
The Square Kilometre Array
Dewdney P E, Hall P J, Schilizzi R T and Lazio T J L W 2009 · 2009
Cited alongside, same era.
The gravitational-wave signature of core-collapse supernovae
Ott C D 2009 · 2009
Cited alongside, same era.
Prix R 2009 in
2009
Cited alongside, same era.
Physics, Astrophysics and Cosmology with Gravitational Waves
Sathyaprakash B S and Schutz B F 2009 · 2009
Cited alongside, same era.
Later among the works it cites.
Einstein@Home all-sky search for periodic gravitational waves in LIGO S5 data
Aasi J et al. 2013 · 2013
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eLISA: Astrophysics and cosmology in the millihertz regime
Amaro-Seoane P et al. 2013 · 2013
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Possible LISA follow-on mission scientific objectives
Bender P L, Begelman M C and Gair J R 2013 · 2013
Later among the works it cites.
Observing the Galaxy’s massive black hole with gravitational wave bursts
Berry C P L and Gair J R 2013 · 2013
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Demorest P B et al. 2013 · 2013
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Testing General Relativity with Low-Frequency, Space-Based Gravitational-Wave Detectors
Gair J R, Vallisneri M, Larson S L and Baker J G 2013 · 2013
Later among the works it cites.
The Parkes Pulsar Timing Array
Hobbs G 2013 · 2013
Later among the works it cites.
The European Pulsar Timing Array and the Large European Array for Pulsars
Kramer M and Champion D J 2013 · 2013
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The International Pulsar Timing Array
Manchester R N and IPTA 2013 · 2013
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The North American Nanohertz Observatory for Gravitational Waves
McLaughlin M A 2013 · 2013
Later among the works it cites.
Seoane P A et al. 2013 · 2013
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Sesana A 2013 · 2013
Later among the works it cites.
Gravitational-wave limits from pulsar timing constrain supermassive black hole evolution
Shannon R M et al. 2013 · 2013
Later among the works it cites.
Sensitivity curves for searches for gravitational-wave backgrounds
Thrane E and Romano J D 2013 · 2013
Later among the works it cites.
IndIGO and Ligo-India Scope and Plans for Gravitational Wave Research and Precision Metrology in India
Unnikrishnan C S 2013 · 2013
Later among the works it cites.
Constraints on Cosmic Strings from the LIGO-Virgo Gravitational-Wave Detectors
Aasi J et al. 2014 a · 2014
Closest in time.
Gravitational waves from known pulsars: results from the initial detector era
Aasi J et al. 2014 b · 2014
Closest in time.
Detection of B-Mode Polarization at Degree Angular Scales by BICEP2
Ade P A R et al. 2014 · 2014
Closest in time.
Mingarelli C M F and Sidery T 2014 · 2014
Closest in time.
Estimating the sensitivity of pulsar timing arrays
Moore C J, Taylor S R and Gair J R 2014 · 2014
Closest in time.