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The NANOGrav 12.5 yr Data Set: Bayesian Limits on Gravitational Waves from Individual Supermassive Black Hole Binaries

delete2023-07-07
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OA
AI
Z
Zaven Arzoumanian
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P. T. Baker
L
Laura Blecha
H
Harsha Blumer
A
Adam Brazier
P
Paul R. Brook
S
Sarah Burke-Spolaor
B
B. Bécsy
J
J. Andrew Casey-Clyde
M
Maria Charisi
S
Shami Chatterjee
S
Siyuan Chen
J
J. M. Cordes
N
Neil J. Cornish
F
F. Crawford
H
H. Thankful Cromartie
M
Megan E. DeCesar
P
Paul Demorest
T
Timothy Dolch
J
Justin A. Ellis
E
E. C. Ferrara
W
William Fiore
E
Emmanuel Fonseca
G
Gabriel E. Freedman
N
N. Garver-Daniels
P
Peter A. Gentile
J
Joseph Glaser
D
Deborah C. Good
K
Kayhan Gültekin
J
Jeffrey S. Hazboun
R
Ross J. Jennings
A
Aaron D. Johnson
M
Megan L. Jones
A
Andrew R. Kaiser
D
D. L. Kaplan
L
Luke Zoltan Kelley
J
J. S. Key
N
Nima Laal
M
Michael T. Lam
W
William G. Lamb
T
T. Joseph W. Lazio
N
N. Lewandowska
T
Tingting Liu
D
D. R. Lorimer
J
Jing Luo
R
Ryan S. Lynch
D
Dustin R. Madison
A
Alexander McEwen
M
M. A. McLaughlin
C
Chiara M. F. Mingarelli
C
Cherry Ng
D
David J. Nice
S
Stella Koch Ocker
K
Ken D. Olum
T
Timothy T. Pennucci
N
Nihan S. Pol
S
S. M. Ransom
P
Paul S. Ray
J
Joseph D. Romano
B
Brent J. Shapiro-Albert
X
Xavier Siemens
J
Joseph Simon
S
Siwek, Magdalena H.
R
R. Spiewak
I
I. H. Stairs
D
Daniel R. Stinebring
K
K. Stovall
J
Joseph K. Swiggum
J
Jessica Sydnor
S
Stephen R. Taylor
J
Jacob E. Turner
M
Michele Vallisneri
S
Sarah J. Vigeland
H
Haley M. Wahl
G
Gregory Walsh
C
Caitlin A. Witt *
O
Olivia Young
N
NANOGrav Collaboration
DOI:10.3847/2041-8213/acdbc7delete
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Abstract

Abstract

En 中文
Pulsar timing array collaborations, such as the North American Nanohertz Observatory for Gravitational Waves (NANOGrav), are seeking to detect nanohertz gravitational waves emitted by supermassive black hole binaries formed in the aftermath of galaxy mergers. We have searched for continuous waves from individual circular supermassive black hole binaries using NANOGrav's recent 12.5 yr data set. We created new methods to accurately model the uncertainties on pulsar distances in our analysis, and we implemented new techniques to account for a common red-noise process in pulsar timing array data sets while searching for deterministic gravitational wave signals, including continuous waves. As we found no evidence for continuous waves in our data, we placed 95% upper limits on the strain amplitude of continuous waves emitted by these sources. At our most sensitive frequency of 7.65 nHz, we placed a sky-averaged limit of h(0) < (6.82 +/- 0.35) x 10(-15), and h(0) < (2.66 +/- 0.15) x 10-(15) in our most sensitive sky location. Finally, we placed a multimessenger limit of. < (1.41. 0.02) ' 10(9) M circle dot on the chirp mass of the supermassive black hole binary candidate 3C 66B.
Keywords:
PULSAR TIMING ARRAY
GALAXY 3C 66B
PSR J1713+0747
SEARCH
PARALLAX
SYSTEMS
SIGNAL
CONSTRAINTS
ASTROMETRY
TIME

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Astrophysical Journal Letters cover
Astrophysical Journal Letters
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