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The Laser Interferometer Space Antenna will be the first Gravitational Wave observatory in space.
Reconstructing the spectral shape of a stochastic gravitational wave background with LISA
Chiara Caprini, Daniel G. Figueroa, Raphael Flauger, Germano Nardini, Marco Peloso, Mauro Pieroni, Angelo Ricciardone, and Gianmassimo Tasinato · 1906
Earlier work this paper cites.
The weighted likelihood ratio, linear hypotheses on normal location parameters
James M. Dickey · 1971
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Psd computations using welch’s method. [power spectral density (psd)]
O M Solomon, Jr · 1991
Earlier work this paper cites.
Measuring the stochastic gravitational-radiation background with laser-interferometric antennas
Nelson Christensen · 1992
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Bayes Factors
Robert E. Kass and Adrian E. Raftery · 1995
Earlier work this paper cites.
Computing bayes factors using a generalization of the savage-dickey density ratio
Isabella Verdinelli and Larry Wasserman · 1995
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Bayes factors
Robert E. Kass and Adrian E. Raftery · 1995
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Angular resolution of the lisa gravitational wave detector
Curt Cutler · 1998
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Adaptive proposal distribution for random walk metropolis algorithm
Heikki Haario, Eero Saksman, and Johanna Tamminen · 1999
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Lisa optimal sensitivity
Thomas A. Prince, Massimo Tinto, Shane L. Larson, and J. W. Armstrong · 2002
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Spectrum and spectral density estimation by the discrete fourier transform (dft), including a comprehensive list of window functions and some new at-top windows
G. Heinzel, A Rüdiger, and R Schilling · 2002
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Lisa response function
Neil J. Cornish and Louis J. Rubbo · 2003
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Time-delay interferometry
Massimo Tinto and Sanjeev V. Dhurandhar · 2005
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Probing anisotropies of gravitational-wave backgrounds with a space-based interferometer : Geometric properties of antenna patterns and their angular power
Hideaki Kudoh and Atsushi Taruya · 2005
Earlier work this paper cites.
Improved spectrum estimation from digitized time series on a logarithmic frequency axis
M Tröbs and G. Heinzel · 2006
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Searching for massive black hole binaries in the first mock LISA data challenge
Neil J Cornish and Edward K Porter · 2007
Cited alongside, same era.
Non-gaussianity test for discriminating gravitational wave backgrounds around 0.1-1 hz
Naoki Seto · 2008
Cited alongside, same era.
Lisacode : A scientific simulator of lisa
Antoine Petiteau, Gérard Auger, Hubert Halloin, Olivier Jeannin, Eric Plagnol, Sophie Pireaux, Tania Regimbau, and Jean-Yves Vinet · 2008
Cited alongside, same era.
Detecting a stochastic gravitational-wave background : The overlap reduction function
Lee Samuel Finn, Shane L. Larson, and Joseph D. Romano · 2009
Cited alongside, same era.
Gravitational-wave confusion background from cosmological compact binaries : Implications for future terrestrial detectors
T. Regimbau and Scott A. Hughes · 2009
Cited alongside, same era.
European Pulsar Timing Array Limits On An Isotropic Stochastic Gravitational-Wave Background
L. Lentati et al · 2015
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Limits on anisotropy in the nanohertz stochastic gravitational wave background
S. R. Taylor, C. M. F. Mingarelli, J. R. Gair, A. Sesana, G. Theureau, S. Babak, C. G. Bassa, P. Brem, M. Burgay, R. N. Caballero, D. J. Champion, I. Cognard, G. Desvignes, L. Guillemot, J. W. T. Hessels, G. H. Janssen, R. Karuppusamy, M. Kramer, A. Lassus, P. Lazarus, L. Lentati, K. Liu, S. Osłowski, D. Perrodin, A. Petiteau, A. Possenti, M. B. Purver, P. A. Rosado, S. A. Sanidas, R. Smits, B. Stappers, C. Tiburzi, R. van Haasteren, A. Vecchio, and J. P. W. Verbiest · 2015
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Mapping gravitational-wave backgrounds of arbitrary polarisation using pulsar timing arrays
Jonathan R. Gair, Joseph D. Romano, and Stephen R. Taylor · 2015
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THE NANOGRAV NINE-YEAR DATA SET : LIMITS ON THE ISOTROPIC STOCHASTIC GRAVITATIONAL WAVE BACKGROUND
Z. Arzoumanian, A. Brazier, S. Burke-Spolaor, S. J. Chamberlin, S. Chatterjee, B. Christy, J. M. Cordes, N. J. Cornish, K. Crowter, P. B. Demorest, X. Deng, T. Dolch, J. A. Ellis, R. D. Ferdman, E. Fonseca, N. Garver-Daniels, M. E. Gonzalez, F. Jenet, G. Jones, M. L. Jones, V. M. Kaspi, M. Koop, M. T. Lam, T. J. W. Lazio, L. Levin, A. N. Lommen, D. R. Lorimer, J. Luo, R. S. Lynch, D. R. Madison, M. A. McLaughlin, S. T. McWilliams, C. M. F. Mingarelli, D. J. Nice, N. Palliyaguru, T. T. Pennucci, S. M. Ransom, L. Sampson, S. A. Sanidas, A. Sesana, X. Siemens, J. Simon, I. H. Stairs, D. R. Stinebring, K. Stovall, J. Swiggum, S. R. Taylor, M. Vallisneri, R. van Haasteren, Y. Wang, and W. W. Zhu and · 2016
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Melissa Anholm, Stefan Ballmer, Jolien D. E. Creighton, Larry R. Price, and Xavier Siemens · 2009
Cited alongside, same era.
Discriminating between a stochastic gravitational wave background and instrument noise
Matthew R. Adams and Neil J. Cornish · 2010
Cited alongside, same era.
Bayesian parameter estimation in the second LISA Pathfinder mock data challenge
M. Nofrarias, C. Röver, M. Hewitson, a. Monsky, G. Heinzel, K. Danzmann, L. Ferraioli, M. Hueller, and S. Vitale · 2010
Cited alongside, same era.
Bayesian hypothesis testing for psychologists : A tutorial on the savage-dickey method
Eric-Jan Wagenmakers, Tom Lodewyckx, Himanshu Kuriyal, and Raoul Grasman · 2010
Cited alongside, same era.
Modelling coloured residual noise in gravitational-wave signal processing
Christian Röver, Renate Meyer, and Nelson Christensen · 2011
Cited alongside, same era.
Gravitational-wave emission from compact galactic binaries
Samaya Nissanke, Michele Vallisneri, Gijs Nelemans, and Thomas A. Prince · 2012
Cited alongside, same era.
Detecting a stochastic gravitational wave background in the presence of a galactic foreground and instrument noise
Matthew R. Adams and Neil J. Cornish · 2014
Cited alongside, same era.
Later among the works it cites.
Estimate of low frequency excess noise in lisa pathfinder. method and results
E Castelli, D Vetrugno, S Vitale, W J Weber, L Ferraioli, M Hewitson, and N Karnesis · 2016
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Detection methods for stochastic gravitational-wave backgrounds : a unified treatment
Joseph D. Romano and Neil J. Cornish · 2017
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Minimum-error, low-correlation, power spectral density estimation with proper error statistics
Vitale S · 2017
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Impact of galactic foreground characterization on a global analysis for the LISA gravitational wave observatory
Travis Robson and Neil Cornish · 2017
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GWTC-1 : A Gravitational-Wave Transient Catalog of Compact Binary Mergers Observed by LIGO and Virgo during the First and Second Observing Runs
B. P. Abbott et al · 2018
Later among the works it cites.
Cosmological backgrounds of gravitational waves
Chiara Caprini and Daniel G Figueroa · 2018
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LISA Data Challenge Manual
Babak S and Petiteau A · 2018
Later among the works it cites.
Gravitational-wave background sky maps from advanced ligo o1 data
Arianna I. Renzini and Carlo R. Contaldi · 2019
Closest in time.
https://lisa-ldc.lal.in2p3.fr/ldc
LISA Data Challenges, the Radler · 2019
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Foreground cleaning and template-free stochastic background extraction for LISA
Mauro Pieroni and Enrico Barausse · 2020
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