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We describe the North American Nanohertz Observatory for Gravitational Waves (NANOGrav) and its efforts to directly detect and study gravitational waves and other synergistic physics and astrophysics using radio timing observations of millisecond pulsars.
Upper limits on the isotopic gravitational radiation background frompulsar timing analysis
R. W. Hellings and G. S. Downs · 1983
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A Practical Theorem on Gravitational Wave Backgrounds
E. S. Phinney · 2001
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Gravitational Waves Probe the Coalescence Rate of Massive Black Hole Binaries
A. H. Jaffe and D. C. Backer · 2003
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A Compact Supermassive Binary Black Hole System
C. Rodriguez, G. B. Taylor, R. T. Zavala, A. B. Peck, L. K. Pollack, and R. W. Romani · 2006
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Pulsar Timing as a Probe of Non-Einsteinian Polarizations of Gravitational Waves
K. J. Lee, F. A. Jenet, and Richard H. Price · 2008
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Optimal strategies for gravitational wave stochastic background searches in pulsar timing data
Melissa Anholm, Stefan Ballmer, Jolien D. E. Creighton, Larry R. Price, and Xavier Siemens · 2009
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Measuring the Mass of Solar System Planets Using Pulsar Timing
D. J. Champion, G. B. Hobbs, R. N. Manchester, R. T. Edwards, D. C. Backer, M. Bailes, N. D. R. Bhat, S. Burke-Spolaor, W. Coles, and P. B. Demorest · 2010
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Gravitational-wave memory and pulsar timing arrays
Rutger van Haasteren and Yuri Levin · 2010
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Prospects for detecting dark matter halo substructure with pulsar timing
Shant Baghram, Niayesh Afshordi, and Kathryn M. Zurek · 2011
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Optimizing Pulsar Timing Arrays to Maximize Gravitational Wave Single-source Detection: A First Cut
Brian J. Burt, Andrea N. Lommen, and Lee S. Finn · 2011
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Development of a pulsar-based time-scale
G. Hobbs, W. Coles, R. N. Manchester, M. J. Keith, R. M. Shannon, D. Chen, M. Bailes, N. D. R. Bhat, S. Burke-Spolaor, and D. Champion · 2012
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Detecting Gravitational Wave Memory with Pulsar Timing
J. M. Cordes and F. A. Jenet · 2012
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Stochastic backgrounds in alternative theories of gravity: Overlap reduction functions for pulsar timing arrays
Sydney J. Chamberlin and Xavier Siemens · 2012
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Systematic investigation of the expected gravitational wave signal from supermassive black hole binaries in the pulsar timing band
A. Sesana · 2013
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Coevolution (Or Not) of Supermassive Black Holes and Host Galaxies
John Kormendy and Luis C. Ho · 2013
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Revisiting the Scaling Relations of Black Hole Masses and Host Galaxy Properties
Nicholas J. McConnell and Chung-Pei Ma · 2013
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The stochastic background: scaling laws and time to detection for pulsar timing arrays
Xavier Siemens, Justin Ellis, Fredrick Jenet, and Joseph D. Romano · 2013
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Insights into the astrophysics of supermassive black hole binaries from pulsar timing observations
A. Sesana · 2013
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Characterizing gravitational wave stochastic background anisotropy with pulsar timing arrays
C. M. F. Mingarelli, T. Sidery, I. Mandel, and A. Vecchio · 2013
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Limits on the Stochastic Gravitational Wave Background from the North American Nanohertz Observatory for Gravitational Waves
P. B. Demorest, R. D. Ferdman, M. E. Gonzalez, D. Nice, S. Ransom, I. H. Stairs, Z. Arzoumanian, A. Brazier, S. Burke-Spolaor, S. J. Chamberlin, et al · 2013
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Limits to PTA sensitivity: spin stability and arrival time precision of millisecond pulsars
James M. Cordes · 2013
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Optimization of NANOGrav’s Time Allocation for Maximum Sensitivity to Single Sources
Brian Christy, Ryan Anella, Andrea Lommen, Lee Samuel Finn, Richard Camuccio, and Emma Handzo · 2014
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Expected properties of the first gravitational wave signal detected with pulsar timing arrays
Pablo A. Rosado, Alberto Sesana, and Jonathan Gair · 2015
Cited alongside, same era.
Constraining the solution to the last parsec problem with pulsar timing
Laura Sampson, Neil J. Cornish, and Sean T. McWilliams · 2015
Cited alongside, same era.
NANOGrav Constraints on Gravitational Wave Bursts with Memory
Z. Arzoumanian, A. Brazier, S. Burke-Spolaor, S. J. Chamberlin, S. Chatterjee, B. Christy, J. M. Cordes, N. J. Cornish, P. B. Demorest, and X. Deng · 2015
Cited alongside, same era.
Mapping gravitational-wave backgrounds of arbitrary polarisation using pulsar timing arrays
Jonathan R. Gair, Joseph D. Romano, and Stephen R. Taylor · 2015
Cited alongside, same era.
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, and R. N. Caballero · 2015
Cited alongside, same era.
Single sources in the low-frequency gravitational wave sky: properties and time to detection by pulsar timing arrays
Luke Zoltan Kelley, Laura Blecha, Lars Hernquist, Alberto Sesana, and Stephen R. Taylor · 2018
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Constraining Alternative Theories of Gravity Using Pulsar Timing Arrays
Neil J. Cornish, Logan O’Beirne, Stephen R. Taylor, and Nicolás Yunes · 2018
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Parkes Pulsar Timing Array constraints on ultralight scalar-field dark matter
Nataliya K. Porayko, Xingjiang Zhu, Yuri Levin, Lam Hui, George Hobbs, Aleksandra Grudskaya, Konstantin Postnov, Matthew Bailes, N. D. Ramesh Bhat, and William Coles · 2018
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Noise-marginalized optimal statistic: A robust hybrid frequentist-Bayesian statistic for the stochastic gravitational-wave background in pulsar timing arrays
Sarah J. Vigeland, Kristina Islo, Stephen R. Taylor, and Justin A. Ellis · 2018
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Time-domain implementation of the optimal cross-correlation statistic for stochastic gravitational-wave background searches in pulsar timing data
Sydney J. Chamberlin, Jolien D. E. Creighton, Xavier Siemens, Paul Demorest, Justin Ellis, Larry R. Price, and Joseph D. Romano · 2015
Cited alongside, same era.
An ultra-wideband dielectrically loaded quad-ridged feed horn for radio astronomy
A. Dunning, M. Bowen, M. Bourne, D. Hayman, and S. L. Smith · 2015
Cited alongside, same era.
Are We There Yet? Time to Detection of Nanohertz Gravitational Waves Based on Pulsar-timing Array Limits
S. R. Taylor, M. Vallisneri, J. A. Ellis, C. M. F. Mingarelli, T. J. W. Lazio, and R. van Haasteren · 2016
Cited alongside, same era.
Constraints on Black Hole/Host Galaxy Co-evolution and Binary Stalling Using Pulsar Timing Arrays
Joseph Simon and Sarah Burke-Spolaor · 2016
Cited alongside, same era.
Detecting Eccentric Supermassive Black Hole Binaries with Pulsar Timing Arrays: Resolvable Source Strategies
S. R. Taylor, E. A. Huerta, J. R. Gair, and S. T. McWilliams · 2016
Cited alongside, same era.
A study of spatial correlations in pulsar timing array data
C. Tiburzi, G. Hobbs, M. Kerr, W. A. Coles, S. Dai, R. N. Manchester, A. Possenti, R. M. Shannon, and X. P. You · 2016
Cited alongside, same era.
Are We There Yet? Time to Detection of Nanohertz Gravitational Waves Based on Pulsar-timing Array Limits
S. R. Taylor, M. Vallisneri, J. A. Ellis, C. M. F. Mingarelli, T. J. W. Lazio, and R. van Haasteren · 2016
Cited alongside, same era.
K. Aggarwal, Z. Arzoumanian, P. T. Baker, A. Brazier, M. R. Brinson, P. R. Brook, S. Burke-Spolaor, S. Chatterjee, J. M. Cordes, N. J. Cornish, et al · 2018
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Binary Pulsar Distances and Velocities from Gaia Data Release 2
Ross J. Jennings, David L. Kaplan, Shami Chatterjee, James M. Cordes, and Adam T. Deller · 2018
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Improving Binary Millisecond Pulsar Distances with Gaia
Chiara M. F. Mingarelli, Lauren Anderson, Megan Bedell, and David N. Spergel · 2018
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The astrophysics of nanohertz gravitational waves
Sarah Burke-Spolaor, Stephen R. Taylor, Maria Charisi, Timothy Dolch, Jeffrey S. Hazboun, A. Miguel Holgado, Luke Zoltan Kelley, T. Joseph W. Lazio, Dustin R. Madison, Natasha McMann, et al · 2019
Closest in time.
Constraining astrophysical observables of Galaxy and Supermassive Black Hole Binary Mergers using Pulsar Timing Arrays
Siyuan Chen, Alberto Sesana, and Christopher J. Conselice · 2019
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Supermassive Black-hole Demographics &Environments With Pulsar Timing Arrays
Stephen Taylor, Sarah Burke-Spolaor, Paul T. Baker, Maria Charisi, Kristina Islo, Luke Z. Kelley, Dustin R. Madison, Joseph Simon, Sarah Vigeland, and Nanograv Collaboration · 2019
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Associating host galaxy candidates to massive black hole binaries resolved by pulsar timing arrays
Janna M. Goldstein, Alberto Sesana, A. Miguel Holgado, and John Veitch · 2019
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Massive BH binaries as periodically variable AGN
Luke Zoltan Kelley, Zoltán Haiman, Alberto Sesana, and Lars Hernquist · 2019
Closest in time.
Multi-Messenger Astrophysics With Pulsar Timing Arrays
Luke Kelley, M. Charisi, S. Burke-Spolaor, J. Simon, L. Blecha, T. Bogdanovic, M. Colpi, J. Comerford, D. D’Orazio, and M. Dotti · 2019
Closest in time.
Prospects for Memory Detection with Low-Frequency Gravitational Wave Detectors
Kristina Islo, Joseph Simon, Sarah Burke-Spolaor, and Xavier Siemens · 2019
Closest in time.
Physics Beyond the Standard Model With Pulsar Timing Arrays
Xavier Siemens, Jeffrey Hazboun, Paul T. Baker, Sarah Burke-Spolaor, Dustin R. Madison, Chiara Mingarelli, Joseph Simon, and Tristan Smith · 2019
Closest in time.
Fundamental Physics with Radio Millisecond Pulsars
Emmanuel Fonseca, Paul Demorest, Scott Ransom, and Ingrid Stairs · 2019
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Twelve Decades: Probing the Interstellar Medium from kiloparsec to sub-AU scales
Dan R. Stinebring, Shami Chatterjee, Susan E. Clark, James M. Cordes, Timothy Dolch, Carl Heiles, Alex S. Hill, Megan Jones, Victoria Kaspi, and Michael T. Lam · 2019
Closest in time.
Pulsar Timing Probes of Primordial Black Holes and Subhalos
Jeff A. Dror, Harikrishnan Ramani, Tanner Trickle, and Kathryn M. Zurek · 2019
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Gravitational Waves, Extreme Astrophysics, and Fundamental Physics with Precision Pulsar Timing
James Cordes, Maura A. McLaughlin, and NANOGrav Collaboration · 2019
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The Virtues of Time and Cadence for Pulsars and Fast Transients
Ryan Lynch, Paul Brook, Shami Chatterjee, Timoth Dolch, Michael Kramer, Michael T. Lam, Natalia Lewand owska, Maura McLaughlin, Nihan Pol, and Ingrid Stairs · 2019
Closest in time.
Microarcsecond VLBI Pulsar Astrometry with PSR π \pi II. Parallax Distances for 57 Pulsars
A. T. Deller, W. M. Goss, W. F. Brisken, S. Chatterjee, J. M. Cordes, G. H. Janssen, Y. Y. Kovalev, T. J. W. Lazio, L. Petrov, and B. W. Stappers · 2019
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Cyberinfrastructure Requirements to Enhance Multi-messenger Astrophysics
Philip Chang, Gabrielle Allen, Warren Anderson, Federica B. Bianco, Joshua S. Bloom, Patrick R. Brady, Adam Brazier, S. Bradley Cenko, Sean M. Couch, and Tyce DeYoung · 2019
Closest in time.