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The space-based gravitational-wave detector eLISA has been selected as the ESA L3 mission, and the mission design will be finalised by the end of this decade.
Gravitational radiation from point masses in a Keplerian orbit
P. C. Peters and J. Mathews · 1963
Earlier work this paper cites.
Perturbations of a rotating black hole, I: Fundamental equations for gravitational, electromagnetic, and neutrino-field perturbations
S. A. Teukolsky · 1973
Earlier work this paper cites.
Gravitation
C. W. Misner, K. S. Thorne, and J. A. Wheeler · 1973
Earlier work this paper cites.
The mathematical theory of black holes
S. Chandrasekhar · 1983
Earlier work this paper cites.
Gravitational waves from merging compact binaries: How accurately can one extract the binary’s parameters from the inspiral waveform?
C. Cutler and E. E. Flanagan · 1994
Earlier work this paper cites.
Evolution of circular, nonequatorial orbits of Kerr black holes due to gravitational-wave emission, II: Inspiral trajectories and gravitational waveforms
S. A. Hughes · 2001
Earlier work this paper cites.
Celestial mechanics in Kerr spacetime
W. Schmidt · 2002
Earlier work this paper cites.
Perturbative approach to an orbital evolution around a supermassive black hole
Y. Mino · 2003
Earlier work this paper cites.
LISA capture sources: Approximate waveforms, signal-to-noise ratios, and parameter estimation accuracy
L. Barack and C. Cutler · 2004
Cited alongside, same era.
Rotating black hole orbit functionals in the frequency domain
S. Drasco and S. A. Hughes · 2004
Cited alongside, same era.
An overview of the Mock LISA Data Challenges
K. A. Arnaud et al · 2006
Cited alongside, same era.
Gravitational wave snapshots of generic extreme mass ratio inspirals
S. Drasco and S. A. Hughes · 2006
Cited alongside, same era.
Improved approximate inspirals of test bodies into Kerr black holes
J. R. Gair and K. Glampedakis · 2006
Cited alongside, same era.
“Kludge” gravitational waveforms for a test-body orbiting a Kerr black hole
S. Babak et al · 2007
Cited alongside, same era.
The motion of point particles in curved spacetime
E. Poisson, A. Pound, and I. Vega · 2011
Later among the works it cites.
Forced motion near black holes
J. R. Gair et al · 2011
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Low-frequency gravitational-wave science with eLISA/NGO
P. Amaro-Seoane et al · 2012
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Evolution of inspiral orbits around a Schwarzschild black hole
N. Warburton et al · 2012
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Testing general relativity with low-frequency, space-based gravitational-wave detectors
J. R. Gair, M. Vallisneri, S. L. Larson, and J. G. Baker · 2013
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eLISA/NGO: Astrophysics and cosmology in the gravitational-wave millihertz regime
P. Amaro-Seoane et al · 2013
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Gravitational self-force in extreme mass-ratio inspirals
L. Barack · 2009
Cited alongside, same era.
The Japanese space gravitational wave antenna: DECIGO
S. Kawamura et al · 2011
Cited alongside, same era.
LISA and its pathfinder
K. Danzmann (for the LISA Pathfinder Team and the eLISA Consortium) · 2015
Closest in time.
Calculation of radiation reaction effect on orbital parameters in Kerr spacetime
N. Sago and R. Fujita · 2015
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