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The LISA Pathfinder (LPF) mission succeeded outstandingly in demonstrating key technological aspects of future space-borne gravitational-wave detectors, such as the Laser Interferometer Space Antenna (LISA).
Matching pursuits with time-frequency dictionaries
S. Mallat and Z. Zhang · 1993
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The First BATSE Gamma-Ray Burst Catalog
G.J. Fishman, C.A. Meegan, R.B. Wilson, M.N. Brock, J.M. Horack et al · 1994
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Cancellation of laser noise in an unequal-arm interferometer detector of gravitational radiation
M. Tinto and J.W. Armstrong · 1999
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LISA optimal sensitivity
T.A. Prince, J.W. Armstrong, M. Tinto and S.L. Larson · 2002
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Interferometry for the LISA technology package (LTP) aboard SMART-2
G. Heinzel, C. Braxmaier, R. Schilling, A. Rüdiger, D. Robertson et al · 2003
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Generalized F-statistic: Multiple detectors and multiple gravitational wave pulsars
C. Cutler and B.F. Schutz · 2005
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The LISA Pathfinder interferometry—hardware and system testing
H. Audley, K. Danzmann, A.G. Marín, G. Heinzel, A. Monsky et al · 2011
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Gravitational-wave data analysis. Formalism and sample applications: The Gaussian Case, dec 2012
P. Jaranowski and A. Królak · 2012
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emcee : The MCMC Hammer
D. Foreman-Mackey, D.W. Hogg, D. Lang and J. Goodman · 2013
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Time-Delay Interferometry
M. Tinto and S.V. Dhurandhar · 2014
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Sub-Femto- g g Free Fall for Space-Based Gravitational Wave Observatories: LISA Pathfinder Results
M. Armano, H. Audley, G. Auger, J.T. Baird, M. Bassan et al · 2016
Cited alongside, same era.
Dynamic temperature selection for parallel tempering in Markov chain Monte Carlo simulations
W.D. Vousden, W.M. Farr and I. Mandel · 2016
Cited alongside, same era.
corner.py: Scatterplot matrices in Python
D. Foreman-Mackey · 2016
Cited alongside, same era.
Laser Interferometer Space Antenna
P. Amaro-Seoane, H. Audley, S. Babak, J. Baker, E. Barausse et al · 2017
Cited alongside, same era.
Preliminary results on the suppression of sensing cross-talk in LISA Pathfinder
G. Wanner, N. Karnesis and on behalf of the LISA Pathfinder collaboration · 2017
Cited alongside, same era.
Exponential shapelets: basis functions for data analysis of isolated features
J. Bergé, R. Massey, Q. Baghi and P. Touboul · 2019
Later among the works it cites.
LISA Pathfinder Legacy Archive, 2019
European Space Agency · 2019
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Neural Spline Flows, 2019
C. Durkan, A. Bekasov, I. Murray and G. Papamakarios · 2019
Later among the works it cites.
Detecting gravitational wave bursts with lisa in the presence of instrumental glitches
T. Robson and N.J. Cornish · 2019
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LISA Pathfinder noise performance results: disturbances in the sub-mHz frequency band and projection to LISA
E. Castelli · 2020
Later among the works it cites.
Global analysis of the gravitational wave signal from Galactic binaries
T.B. Littenberg, N.J. Cornish, K. Lackeos and T. Robson · 2020
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Beyond the Required LISA Free-Fall Performance: New LISA Pathfinder Results down to 20 μ Hz 20\text{ }\text{ }\mu\mathrm{Hz}
M. Armano, H. Audley, J. Baird, P. Binetruy, M. Born et al · 2018
Cited alongside, same era.
Calibrating the system dynamics of LISA Pathfinder
M. Armano, H. Audley, J. Baird, P. Binetruy, M. Born et al · 2018
Cited alongside, same era.
In-orbit performance of the LISA Pathfinder drag-free and attitude control system
A. Schleicher, T. Ziegler, R. Schubert, N. Brandt, P. Bergner et al · 2018
Cited alongside, same era.
LISA Science Requirements Document
LISA Simulation Working Group and LISA Science Study Team · 2018
Cited alongside, same era.
Micrometeoroid events in LISA pathfinder
J.I. Thorpe, J. Slutsky, J.G. Baker, T.B. Littenberg, S. Hourihane et al · 2019
Cited alongside, same era.
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
Cited in the paper.
Later among the works it cites.
https://lisa-ldc.lal.in2p3.fr/
LISA Data Challenges · 2021
Closest in time.
In depth analysis of LISA Pathfinder performance results: time evolution, noise projection, physical models and implications for LISA
M. Armano et al · 2021
Closest in time.
LISA Glitch, 2021
J.B. Bayle, E. Castelli and N. Korsakova · 2021
Closest in time.
PyTDI, 2021
M. Staab and J.B. Bayle · 2021
Closest in time.