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Standard detection and analysis techniques for transient gravitational waves make the assumption that detector data contains, at most, one signal at any time.
Maximum mass of a neutron star
Clifford E. Rhoades, Jr. and Remo Ruffini · 1974
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χ \chi 2 time-frequency discriminator for gravitational wave detection
Bruce Allen · 2005
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Matplotlib: A 2d graphics environment
J. D. Hunter · 2007
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Advligo interferometer sensing and control conceptual design
Rich Abbott, Rana Adhikari, Stefan Ballmer, Lisa Barsotti, Matt Evans, Peter Fritschel, Valera Frolov, Guido Mueller, Bram Slagmolen, and Sam Waldman · 2008
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The einstein telescope: a third-generation gravitational wave observatory
M Punturo, M Abernathy, F Acernese, B Allen, Nils Andersson, K Arun, F Barone, B Barr, M Barsuglia, M Beker, et al · 2010
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Data Structures for Statistical Computing in Python
Wes McKinney · 2010
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ET-D PSD: http://www.et-gw.eu/index.php/etsensitivities , 2011
ET collaboration · 2011
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Findchirp: An algorithm for detection of gravitational waves from inspiraling compact binaries
Bruce Allen, Warren G Anderson, Patrick R Brady, Duncan A Brown, and Jolien DE Creighton · 2012
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The timing of nine globular cluster pulsars
Ryan S Lynch, Paulo CC Freire, Scott M Ransom, and Bryan A Jacoby · 2012
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Transient analysis with fast wilson-daubechies time-frequency transform
V Necula, S Klimenko, and G Mitselmakher · 2012
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Interferometer design of the kagra gravitational wave detector
Yoichi Aso, Yuta Michimura, Kentaro Somiya, Masaki Ando, Osamu Miyakawa, Takanori Sekiguchi, Daisuke Tatsumi, Hiroaki Yamamoto, Kagra Collaboration, et al · 2013
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Implementing a search for aligned-spin neutron star-black hole systems with advanced ground based gravitational wave detectors
Tito Dal Canton, Alexander H Nitz, Andrew P Lundgren, Alex B Nielsen, Duncan A Brown, Thomas Dent, Ian W Harry, Badri Krishnan, Andrew J Miller, Karl Wette, et al · 2014
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Advanced LIGO
J. Aasi et al · 2015
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Advanced virgo: a second-generation interferometric gravitational wave detector
Fet al Acernese, M Agathos, K Agatsuma, D Aisa, N Allemandou, A Allocca, J Amarni, P Astone, G Balestri, G Ballardin, et al · 2015
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Gw150914: The advanced ligo detectors in the era of first discoveries
Benjamin P Abbott, R Abbott, TD Abbott, MR Abernathy, F Acernese, K Ackley, C Adams, T Adams, P Addesso, RX Adhikari, et al · 2016
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The pycbc search for gravitational waves from compact binary coalescence
Samantha A Usman, Alexander H Nitz, Ian W Harry, Christopher M Biwer, Duncan A Brown, Miriam Cabero, Collin D Capano, Tito Dal Canton, Thomas Dent, Stephen Fairhurst, et al · 2016
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Method for detection and reconstruction of gravitational wave transients with networks of advanced detectors
S Klimenko, G Vedovato, M Drago, F Salemi, V Tiwari, GA Prodi, C Lazzaro, K Ackley, S Tiwari, CF Da Silva, et al · 2016
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Gw170817: observation of gravitational waves from a binary neutron star inspiral
Benjamin P Abbott, Rich Abbott, TD Abbott, Fausto Acernese, Kendall Ackley, Carl Adams, Thomas Adams, Paolo Addesso, RX Adhikari, Vaishali B Adya, et al · 2017
Cited alongside, same era.
Detecting binary compact-object mergers with gravitational waves: Understanding and improving the sensitivity of the pycbc search
Alexander H Nitz, Thomas Dent, Tito Dal Canton, Stephen Fairhurst, and Duncan A Brown · 2017
Cited alongside, same era.
Improved effective-one-body model of spinning, nonprecessing binary black holes for the era of gravitational-wave astrophysics with advanced detectors
Alejandro Bohé, Lijing Shao, Andrea Taracchini, Alessandra Buonanno, Stanislav Babak, Ian W Harry, Ian Hinder, Serguei Ossokine, Michael Pürrer, Vivien Raymond, et al · 2017
Cited alongside, same era.
Advanced LIGO PSD
The LIGO Collaboration · 2018
Cited alongside, same era.
Using gravitational-wave observations and quasi-universal relations to constrain the maximum mass of neutron stars
Luciano Rezzolla, Elias R Most, and Lukas R Weih · 2018
3-ogc: Catalog of gravitational waves from compact-binary mergers
Alexander H Nitz, Collin D Capano, Sumit Kumar, Yi-Fan Wang, Shilpa Kastha, Marlin Schäfer, Rahul Dhurkunde, and Miriam Cabero · 2021
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Parameter estimation bias from overlapping binary black hole events in second generation interferometers
Philip Relton and Vivien Raymond · 2021
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Biases in parameter estimation from overlapping gravitational-wave signals in the third-generation detector era
Anuradha Samajdar, Justin Janquart, Chris Van Den Broeck, and Tim Dietrich · 2021
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Impacts of overlapping gravitational-wave signals on the parameter estimation: Toward the search for cosmological backgrounds
Yoshiaki Himemoto, Atsushi Nishizawa, and Atsushi Taruya · 2021
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Noisy neighbours: inference biases from overlapping gravitational-wave signals
Andrea Antonelli, Ollie Burke, and Jonathan R Gair · 2021
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Cited alongside, same era.
Kagra: 2.5 generation interferometric gravitational wave detector
Kagra Collaboration · 2019
Cited alongside, same era.
Cosmic explorer: the us contribution to gravitational-wave astronomy beyond ligo
David Reitze, Rana X Adhikari, Stefan Ballmer, Barry Barish, Lisa Barsotti, GariLynn Billingsley, Duncan A Brown, Yanbei Chen, Dennis Coyne, Robert Eisenstein, et al · 2019
Cited alongside, same era.
Matter imprints in waveform models for neutron star binaries: Tidal and self-spin effects
Tim Dietrich, Sebastian Khan, Reetika Dudi, Shasvath J Kapadia, Prayush Kumar, Alessandro Nagar, Frank Ohme, Francesco Pannarale, Anuradha Samajdar, Sebastiano Bernuzzi, et al · 2019
Cited alongside, same era.
Prospects for observing and localizing gravitational-wave transients with advanced ligo, advanced virgo and kagra
Benjamin P Abbott, R Abbott, TD Abbott, S Abraham, F Acernese, K Ackley, C Adams, VB Adya, C Affeldt, M Agathos, et al · 2020
Cited alongside, same era.
gwastro/pycbc: Pycbc release v1.16.13, December 2020
Alex Nitz, Ian Harry, Duncan Brown, Christopher M. Biwer, Josh Willis, Tito Dal Canton, Collin Capano, Larne Pekowsky, Thomas Dent, Andrew R. Williamson, Gareth S Davies, Soumi De, Miriam Cabero, Bernd Machenschalk, Prayush Kumar, Steven Reyes, Duncan Macleod, dfinstad, Francesco Pannarale, Thomas Massinger, Sumit Kumar, Márton Tápai, Leo Singer, Sebastian Khan, Stephen Fairhurst, Alex Nielsen, Shashwat Singh, shasvath, Bhooshan Uday Varsha Gadre, and Iain Dorrington · 2020
Cited alongside, same era.
Multipolar effective-one-body waveforms for precessing binary black holes: Construction and validation
Serguei Ossokine, Alessandra Buonanno, Sylvain Marsat, Roberto Cotesta, Stanislav Babak, Tim Dietrich, Roland Haas, Ian Hinder, Harald P Pfeiffer, Michael Pürrer, et al · 2020
Cited alongside, same era.
Gw190425: Observation of a compact binary coalescence with total mass 3.4 m ⊙ m_{\odot}
BP Abbott, R Abbott, TD Abbott, S Abraham, F Acernese, K Ackley, C Adams, RX Adhikari, VB Adya, Christoph Affeldt, et al · 2020
Cited alongside, same era.
cwb pipeline library: 6.4.1, December 2021
Sergey Klimenko, Gabriele Vedovato, Valentin Necula, Francesco Salemi, Marco Drago, Rhys Poulton, Eric Chassande-Mottin, Vaibhav Tiwari, Claudia Lazzaro, Brendan O’Brian, Marek Szczepanczyk, Shubhanshu Tiwari, and V. Gayathri · 2021
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Observation of gravitational waves from two neutron star–black hole coalescences
R Abbott, TD Abbott, S Abraham, F Acernese, K Ackley, A Adams, C Adams, RX Adhikari, VB Adya, Christoph Affeldt, et al · 2021
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The population of merging compact binaries inferred using gravitational waves through gwtc-3
R Abbott, TD Abbott, F Acernese, K Ackley, C Adams, N Adhikari, RX Adhikari, VB Adya, C Affeldt, D Agarwal, et al · 2021
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Distance measures in gravitational-wave astrophysics and cosmology
Hsin-Yu Chen, Daniel E Holz, John Miller, Matthew Evans, Salvatore Vitale, and Jolien Creighton · 2021
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Inspiral-range: https://git.ligo.org/gwinc/inspiral-range , 2021
Jolien Creighton Jameson Rollins · 2021
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The mass distribution of neutron stars in gravitational-wave binaries
Philippe Landry and Jocelyn S Read · 2021
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Coherent waveburst, a pipeline for unmodeled gravitational-wave data analysis
Marco Drago, Sergey Klimenko, Claudia Lazzaro, Edoardo Milotti, Guenakh Mitselmakher, Valentin Necula, Brendan O’Brian, Giovanni Andrea Prodi, Francesco Salemi, Marek Szczepanczyk, et al · 2021
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GWpy: A Python package for gravitational-wave astrophysics
D. M. Macleod, J. S. Areeda, S. B. Coughlin, T. J. Massinger, and A. L. Urban · 2021
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Toward inference of overlapping gravitational-wave signals
Elia Pizzati, Surabhi Sachdev, Anuradha Gupta, and BS Sathyaprakash · 2022
Closest in time.
Subtracting glitches from gravitational-wave detector data during the third observing run
Derek Davis, TB Littenberg, IM Romero-Shaw, M Millhouse, J McIver, F Di Renzo, and G Ashton · 2022
Closest in time.
The curious case of gw200129: interplay between spin-precession inference and data-quality issues
Ethan Payne, Sophie Hourihane, Jacob Golomb, Richard Udall, Derek Davis, and Katerina Chatziioannou · 2022
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