Fetching the paper…
Reading the bibliography…
We demonstrate how to quantify the frequency-domain amplitude and phase accuracy of waveform models, $\delta A$ and $\delta \phi$, in a form that could be marginalized over in gravitational-wave inference using techniques currently applied for quantifying calibration uncertainty.
Gravitational waves from merging compact binaries: How accurately can one extract the binary’s parameters from the inspiral waveform\?
Curt Cutler and Éanna E. Flanagan · 1994
Earlier work this paper cites.
Gravitational waves from inspiraling compact binaries: Validity of the stationary-phase approximation to the Fourier transform
Serge Droz, Daniel J. Knapp, Eric Poisson, and Benjamin J. Owen · 1999
Earlier work this paper cites.
Resonant tidal excitations of rotating neutron stars in coalescing binaries
Wynn C. G. Ho and Dong Lai · 1999
Earlier work this paper cites.
Modeling gravitational radiation from coalescing binary black holes
J. Baker, M. Campanelli, C. O. Lousto, and R. Takahashi · 2002
Earlier work this paper cites.
Gravitational Wave Astronomy
Jordan B. Camp and Neil J. Cornish · 2004
Earlier work this paper cites.
Data formats for numerical relativity waves
P. Ajith, M. Boyle, D. A. Brown, S. Fairhurst, M. Hannam, I. Hinder, S. Husa, B. Krishnan, R. A. Mercer, F. Ohme, C. D. Ott, J. S. Read, L. Santamaria, and J. T. Whelan · 2007
Earlier work this paper cites.
Gravitomagnetic resonant excitation of Rossby modes in coalescing neutron star binaries
Eanna E. Flanagan and Etienne Racine · 2007
Earlier work this paper cites.
Model waveform accuracy standards for gravitational wave data analysis
Lee Lindblom, Benjamin J. Owen, and Duncan A. Brown · 2008
Earlier work this paper cites.
Using full information when computing modes of post-Newtonian waveforms from inspiralling compact binaries in circular orbit
Lawrence E. Kidder · 2008
Earlier work this paper cites.
Constraining neutron-star tidal Love numbers with gravitational-wave detectors
Éanna É. Flanagan and Tanja Hinderer · 2008
Earlier work this paper cites.
Comparison of post-newtonian templates for compact binary inspiral signals in gravitational-wave detectors
Alessandra Buonanno, Bala R. Iyer, Evan Ochsner, Yi Pan, and B. S. Sathyaprakash · 2009
Earlier work this paper cites.
Post-1-newtonian tidal effects in the gravitational waveform from binary inspirals
Justin Vines, Éanna É. Flanagan, and Tanja Hinderer · 2011
Earlier work this paper cites.
Effect of calibration errors on Bayesian parameter estimation for gravitational wave signals from inspiral binary systems in the advanced detectors era
Salvatore Vitale, Walter Del Pozzo, Tjonnie G. F. Li, Chris Van Den Broeck, Ilya Mandel, Ben Aylott, and John Veitch · 2012
Earlier work this paper cites.
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 D. E. Creighton · 2012
Earlier work this paper cites.
Tidal effects in binary neutron star coalescence
Sebastiano Bernuzzi, Alessandro Nagar, Marcus Thierfelder, and Bernd Brügmann · 2012
Earlier work this paper cites.
Resonant Shattering of Neutron Star Crusts
David Tsang, Jocelyn S. Read, Tanja Hinderer, Anthony L. Piro, and Ruxandra Bondarescu · 2012
Earlier work this paper cites.
Analytic marginalisation of phase parameter
John Veitch and Walter del Pozzo · 2013
Earlier work this paper cites.
Matter effects on binary neutron star waveforms
Jocelyn S. Read, Luca Baiotti, Jolien D. E. Creighton, John L. Friedman, Bruno Giacomazzo, Koutarou Kyutoku, Charalampos Markakis, Luciano Rezzolla, Masaru Shibata, and Keisuke Taniguchi · 2013
Earlier work this paper cites.
Modelling calibration errors in cbc waveforms
Will M. Farr, Benjamin Farr, and Tyson M. Littenberg · 2014
Earlier work this paper cites.
Simple model of complete precessing black-hole-binary gravitational waveforms
Mark Hannam, Patricia Schmidt, Alejandro Bohé, Leïla Haegel, Sascha Husa, Frank Ohme, Geraint Pratten, and Michael Pürrer · 2014
Earlier work this paper cites.
Gravitational Radiation from Post-Newtonian Sources and Inspiralling Compact Binaries
Luc Blanchet · 2014
Earlier work this paper cites.
Parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
J. Veitch, V. Raymond, B. Farr, W. Farr, P. Graff, S. Vitale, B. Aylott, K. Blackburn, N. Christensen, M. Coughlin, W. Del Pozzo, F. Feroz, J. Gair, C. J. Haster, V. Kalogera, T. Littenberg, I. Mandel, R. O’Shaughnessy, M. Pitkin, C. Rodriguez, C. Röver, T. Sidery, R. Smith, M. Van Der Sluys, A. Vecchio, W. Vousden, and L. Wade · 2015
Earlier work this paper cites.
Advanced ligo
The LIGO Scientific Collaboration et al · 2015
Earlier work this paper cites.
Advanced Virgo: a second-generation interferometric gravitational wave detector
F. Acernese et al · 2015
Earlier work this paper cites.
Gravitational-wave sensitivity curves
C. J. Moore, R. H. Cole, and C. P. L. Berry · 2015
Earlier work this paper cites.
Effects of Neutron-Star Dynamic Tides on Gravitational Waveforms within the Effective-One-Body Approach
Tanja Hinderer, Andrea Taracchini, Francois Foucart, Alessandra Buonanno, Jan Steinhoff, Matthew Duez, Lawrence E. Kidder, Harald P. Pfeiffer, Mark A. Scheel, Bela Szilagyi, Kenta Hotokezaka, Koutarou Kyutoku, Masaru Shibata, and Cory W. Carpenter · 2016
Earlier work this paper cites.
Frequency-domain gravitational waves from nonprecessing black-hole binaries. I. New numerical waveforms and anatomy of the signal
Sascha Husa, Sebastian Khan, Mark Hannam, Michael Pürrer, Frank Ohme, Xisco Jiménez Forteza, and Alejandro Bohé · 2016
Earlier work this paper cites.
Frequency-domain gravitational waves from nonprecessing black-hole binaries. II. A phenomenological model for the advanced detector era
Sebastian Khan, Sascha Husa, Mark Hannam, Frank Ohme, Michael Pürrer, Xisco Jiménez Forteza, and Alejandro Bohé · 2016
Earlier work this paper cites.
Effects of waveform model systematics on the interpretation of GW150914
B. P. Abbott, LIGO Scientific Collaboration, and Virgo Collaboration · 2017
Cited alongside, same era.
GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
B. P. Abbott, LIGO Scientific Collaboration, and Virgo Collaboration · 2017
Cited alongside, same era.
Numerical relativity injection infrastructure
Patricia Schmidt, Ian W. Harry, and Harald P. Pfeiffer · 2017
Cited alongside, same era.
Closed-form tidal approximants for binary neutron star gravitational waveforms constructed from high-resolution numerical relativity simulations
Tim Dietrich, Sebastiano Bernuzzi, and Wolfgang Tichy · 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 et al · 2017
Cited alongside, same era.
Gravitational-wave astronomy with a physical calibration model
Ethan Payne, Colm Talbot, Paul D. Lasky, Eric Thrane, and Jeffrey S. Kissel · 2020
Later among the works it cites.
Characterization of systematic error in advanced ligo calibration
Ling Sun, Evan Goetz, Jeffrey S Kissel, Joseph Betzwieser, Sudarshan Karki, Aaron Viets, Madeline Wade, Dripta Bhattacharjee, Vladimir Bossilkov, Pep B Covas, Laurence E H Datrier, Rachel Gray, Shivaraj Kandhasamy, Yannick K Lecoeuche, Gregory Mendell, Timesh Mistry, Ethan Payne, Richard L Savage, Alan J Weinstein, Stuart Aston, Aaron Buikema, Craig Cahillane, Jenne C Driggers, Sheila E Dwyer, Rahul Kumar, and Alexander Urban · 2020
Later among the works it cites.
Science case for the einstein telescope
Michele Maggiore, Chris Van Den Broeck, Nicola Bartolo, Enis Belgacem, Daniele Bertacca, Marie Anne Bizouard, Marica Branchesi, Sebastien Clesse, Stefano Foffa, Juan Garcí a-Bellido, Stefan Grimm, Jan Harms, Tanja Hinderer, Sabino Matarrese, Cristiano Palomba, Marco Peloso, Angelo Ricciardone, and Mairi Sakellariadou · 2020
Later among the works it cites.
Reanalysis of the binary neutron star mergers GW170817 and GW190425 using numerical-relativity calibrated waveform models
Tatsuya Narikawa, Nami Uchikata, Kyohei Kawaguchi, Kenta Kiuchi, Koutarou Kyutoku, Masaru Shibata, and Hideyuki Tagoshi · 2020
Later among the works it cites.
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
Sylvain Marsat and John G. Baker · 2018
Cited alongside, same era.
LIGO Algorithm Library - LALSuite
LIGO Scientific Collaboration · 2018
Cited alongside, same era.
The a+ design curve
Lisa Barsotti, Lee McCuller, Matthew Evans, and Peter Fritschel · 2018
Cited alongside, same era.
Properties of the binary neutron star merger gw170817
LIGO Scientific Collaboration and Virgo Scientific Collaboration · 2018
Cited alongside, same era.
Prospects for observing and localizing gravitational-wave transients with Advanced LIGO, Advanced Virgo and KAGRA
B. P. Abbott, Ligo Scientific Collaboration Kagra Collaboration, and VIRGO Collaboration · 2018
Cited alongside, same era.
Exploring the sensitivity of next generation gravitational wave detectors
Matthew Evans, Jan Harms, and Salvatore Vitale · 2018
Cited alongside, same era.
Using gravitational-wave data to constrain dynamical tides in neutron star binaries
Nils Andersson and Wynn C. G. Ho · 2018
Cited alongside, same era.
Gravitational wave peak luminosity model for precessing binary black holes
Afura Taylor and Vijay Varma · 2020
Later among the works it cites.
Array programming with NumPy
Charles R. Harris, K. Jarrod Millman, Stéfan J. van der Walt, Ralf Gommers, Pauli Virtanen, David Cournapeau, Eric Wieser, Julian Taylor, Sebastian Berg, Nathaniel J. Smith, Robert Kern, Matti Picus, Stephan Hoyer, Marten H. van Kerkwijk, Matthew Brett, Allan Haldane, Jaime Fernández del Río, Mark Wiebe, Pearu Peterson, Pierre Gérard-Marchant, Kevin Sheppard, Tyler Reddy, Warren Weckesser, Hameer Abbasi, Christoph Gohlke, and Travis E. Oliphant · 2020
Later among the works it cites.
pandas-dev/pandas: Pandas, February 2020
The pandas development team · 2020
Later among the works it cites.
Waveform systematics in the gravitational-wave inference of tidal parameters and equation of state from binary neutron-star signals
Rossella Gamba, Matteo Breschi, Sebastiano Bernuzzi, Michalis Agathos, and Alessandro Nagar · 2021
Later among the works it cites.
Statistical and systematic uncertainties in extracting the source properties of neutron star-black hole binaries with gravitational waves
Yiwen Huang, Carl-Johan Haster, Salvatore Vitale, Vijay Varma, Francois Foucart, and Sylvia Biscoveanu · 2021
Later among the works it cites.
Constraining unmodeled physics with compact binary mergers from GWTC-1
Bruce Edelman, F. J. Rivera-Paleo, J. D. Merritt, Ben Farr, Zoheyr Doctor, Jeandrew Brink, Will M. Farr, Jonathan Gair, Joey Shapiro Key, Jess McIver, and Alex B. Nielsen · 2021
Later among the works it cites.
Physical approach to the marginalization of LIGO calibration uncertainties
Salvatore Vitale, Carl-Johan Haster, Ling Sun, Ben Farr, Evan Goetz, Jeff Kissel, and Craig Cahillane · 2021
Later among the works it cites.
Distance measures in gravitational-wave astrophysics and cosmology
Hsin-Yu Chen, Daniel E. Holz, John Miller, Matthew Evans, Salvatore Vitale, and Jolien Creighton · 2021
Later among the works it cites.
Fast, faithful, frequency-domain effective-one-body waveforms for compact binary coalescences
Rossella Gamba, Sebastiano Bernuzzi, and Alessandro Nagar · 2021
Later among the works it cites.
Adiabatic waveforms for extreme mass-ratio inspirals via multivoice decomposition in time and frequency
Scott A. Hughes, Niels Warburton, Gaurav Khanna, Alvin J. K. Chua, and Michael L. Katz · 2021
Later among the works it cites.
Spin effects on neutron star fundamental-mode dynamical tides: Phenomenology and comparison to numerical simulations
Jan Steinhoff, Tanja Hinderer, Tim Dietrich, and Francois Foucart · 2021
Later among the works it cites.
Interpreting binary neutron star mergers: describing the binary neutron star dynamics, modelling gravitational waveforms, and analyzing detections
Tim Dietrich, Tanja Hinderer, and Anuradha Samajdar · 2021
Later among the works it cites.
A horizon study for cosmic explorer: Science, observatories, and community, 2021
Matthew Evans, Rana X Adhikari, Chaitanya Afle, Stefan W. Ballmer, Sylvia Biscoveanu, Ssohrab Borhanian, Duncan A. Brown, Yanbei Chen, Robert Eisenstein, Alexandra Gruson, Anuradha Gupta, Evan D. Hall, Rachael Huxford, Brittany Kamai, Rahul Kashyap, Jeff S. Kissel, Kevin Kuns, Philippe Landry, Amber Lenon, Geoffrey Lovelace, Lee McCuller, Ken K. Y. Ng, Alexander H. Nitz, Jocelyn Read, B. S. Sathyaprakash, David H. Shoemaker, Bram J. J. Slagmolen, Joshua R. Smith, Varun Srivastava, Ling Sun, Salvatore Vitale, and Rainer Weiss · 2021
Later among the works it cites.
Waveform systematics in the gravitational-wave inference of tidal parameters and equation of state from binary neutron-star signals
Rossella Gamba, Matteo Breschi, Sebastiano Bernuzzi, Michalis Agathos, and Alessandro Nagar · 2021
Later among the works it cites.
PESUMMARY: The code agnostic Parameter Estimation Summary page builder
Charlie Hoy and Vivien Raymond · 2021
Later among the works it cites.
Quantifying modeling uncertainties when combining multiple gravitational-wave detections from binary neutron star sources
Nina Kunert, Peter T. H. Pang, Ingo Tews, Michael W. Coughlin, and Tim Dietrich · 2022
Later among the works it cites.
The use of hypermodels to understand binary neutron star collisions
Gregory Ashton and Tim Dietrich · 2022
Later among the works it cites.
Calibration uncertainty’s impact on gravitational-wave observations
Reed Essick · 2022
Later among the works it cites.
Calibration of advanced Virgo and reconstruction of the detector strain h(t) during the observing run O3
F. Acernese, et. al., and Virgo Collaboration · 2022
Later among the works it cites.
Theory-agnostic framework for inspiral tests of general relativity with higher-harmonic gravitational waves
Simone Mezzasoma and Nicolás Yunes · 2022
Later among the works it cites.
Second release of the CoRe database of binary neutron star merger waveforms
Alejandra Gonzalez, Francesco Zappa, Matteo Breschi, Sebastiano Bernuzzi, David Radice, Ananya Adhikari, Alessandro Camilletti, Swami Vivekanandji Chaurasia, Georgios Doulis, Surendra Padamata, Alireza Rashti, Maximiliano Ujevic, Bernd Brügmann, William Cook, Tim Dietrich, Albino Perego, Amit Poudel, and Wolfgang Tichy · 2022
Later among the works it cites.
gwastro/pycbc: v2.0.5 release of pycbc, July 2022
Alex Nitz, Ian Harry, Duncan Brown, Christopher M. Biwer, Josh Willis, Tito Dal Canton, Collin Capano, Thomas Dent, Larne Pekowsky, Andrew R. Williamson, Soumi De, Miriam Cabero, Bernd Machenschalk, Duncan Macleod, Prayush Kumar, Francesco Pannarale, Steven Reyes, Gareth S Cabourn Davies, dfinstad, Sumit Kumar, Márton Tápai, Leo Singer, Sebastian Khan, Stephen Fairhurst, Alex Nielsen, Shashwat Singh, Thomas Massinger, Koustav Chandra, shasvath, and veronica villa · 2022
Later among the works it cites.
Population of Merging Compact Binaries Inferred Using Gravitational Waves through GWTC-3
R. Abbott et al · 2023
Closest in time.