arXiv · 1903.07644
Multi-Messenger Astrophysics with Pulsar Timing Arrays
Abstract
Pulsar timing arrays (PTAs) are on the verge of detecting low-frequency gravitational waves (GWs) from supermassive black hole binaries (SMBHBs). With continued observations of a large sample of millisecond pulsars, PTAs will reach this major milestone within the next decade. Already, SMBHB candidates are being identified by electromagnetic surveys in ever-increasing numbers; upcoming surveys will enhance our ability to detect and verify candidates, and will be instrumental in identifying the host galaxies of GW sources. Multi-messenger (GW and electromagnetic) observations of SMBHBs will revolutionize our understanding of the co-evolution of SMBHs with their host galaxies, the dynamical interactions between binaries and their galactic environments, and the fundamental physics of accretion. Multi-messenger observations can also make SMBHBs 'standard sirens' for cosmological distance measurements out to $z\simeq0.5$. LIGO has already ushered in breakthrough insights in our knowledge of black holes. The multi-messenger detection of SMBHBs with PTAs will be a breakthrough in the years $2020-2030$ and beyond, and prepare us for LISA to help complete our views of black hole demographics and evolution at higher redshifts.
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Luke Zoltan Kelley, Maria Charisi, Sarah Burke-Spolaor, Joseph Simon, Laura Blecha, Tamara Bogdanovic, Monica Colpi, Julie Comerford, Daniel J. D'Orazio, Massimo Dotti, Michael Eracleous, Matthew Graham, Jenny E. Greene, Zoltán Haiman, Kelly Holley-Bockelmann, Erin Kara, Bernard Kelly, S. Komossa, Shane L. Larson, Xin Liu, Chung-Pei Ma, Scott Noble, Vasileios Paschalidis, Roman R. Rafikov, Vikram Ravi, Jessie C. Runnoe, Alberto Sesana, Daniel Stern, Michael A. Strauss, Vivian U, Marta Volonteri, the NANOGrav Collaboration. 2019-03-18. Multi-Messenger Astrophysics with Pulsar Timing Arrays. https://arxiv.org/abs/1903.07644
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