The NANOGrav 15 yr Data Set: Detector Characterization and Noise Budget
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Published:2023-06-29
Issue:1
Volume:951
Page:L10
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ISSN:2041-8205
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Container-title:The Astrophysical Journal Letters
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language:
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Short-container-title:ApJL
Author:
Agazie GabriellaORCID, Anumarlapudi AkashORCID, Archibald Anne M.ORCID, Arzoumanian Zaven, Baker Paul T.ORCID, Bécsy BenceORCID, Blecha LauraORCID, Brazier AdamORCID, Brook Paul R.ORCID, Burke-Spolaor SarahORCID, Charisi MariaORCID, Chatterjee ShamiORCID, Cohen TylerORCID, Cordes James M.ORCID, Cornish Neil J.ORCID, Crawford FronefieldORCID, Cromartie H. ThankfulORCID, Crowter KathrynORCID, DeCesar Megan E.ORCID, Demorest Paul B.ORCID, Dolch TimothyORCID, Drachler Brendan, Ferrara Elizabeth C.ORCID, Fiore WilliamORCID, Fonseca EmmanuelORCID, Freedman Gabriel E.ORCID, Garver-Daniels NateORCID, Gentile Peter A.ORCID, Glaser JosephORCID, Good Deborah C.ORCID, Guertin Lydia, Gültekin KayhanORCID, Hazboun Jeffrey S.ORCID, Jennings Ross J.ORCID, Johnson Aaron D.ORCID, Jones Megan L.ORCID, Kaiser Andrew R.ORCID, Kaplan David L.ORCID, Kelley Luke ZoltanORCID, Kerr MatthewORCID, Key Joey S.ORCID, Laal NimaORCID, Lam Michael T.ORCID, Lamb William G.ORCID, W. Lazio T. Joseph, Lewandowska NataliaORCID, Liu TingtingORCID, Lorimer Duncan R.ORCID, Luo JingORCID, Lynch Ryan S.ORCID, Ma Chung-PeiORCID, Madison Dustin R.ORCID, McEwen AlexanderORCID, McKee James W.ORCID, McLaughlin Maura A.ORCID, McMann NatashaORCID, Meyers Bradley W.ORCID, Mingarelli Chiara M. F.ORCID, Mitridate AndreaORCID, Ng CherryORCID, Nice David J.ORCID, Ocker Stella KochORCID, Olum Ken D.ORCID, Pennucci Timothy T.ORCID, Perera Benetge B. P.ORCID, Pol Nihan S.ORCID, Radovan Henri A.ORCID, Ransom Scott M.ORCID, Ray Paul S.ORCID, Romano Joseph D.ORCID, Sardesai Shashwat C.ORCID, Schmiedekamp AnnORCID, Schmiedekamp CarlORCID, Schmitz KaiORCID, Shapiro-Albert Brent J.ORCID, Siemens XavierORCID, Simon JosephORCID, Siwek Magdalena S.ORCID, Stairs Ingrid H.ORCID, Stinebring Daniel R.ORCID, Stovall KevinORCID, Susobhanan AbhimanyuORCID, Swiggum Joseph K.ORCID, Taylor Stephen R.ORCID, Turner Jacob E.ORCID, Unal CanerORCID, Vallisneri MicheleORCID, Vigeland Sarah J.ORCID, Wahl Haley M.ORCID, Witt Caitlin A.ORCID, Young OliviaORCID,
Abstract
Abstract
Pulsar timing arrays (PTAs) are galactic-scale gravitational wave (GW) detectors. Each individual arm, composed of a millisecond pulsar, a radio telescope, and a kiloparsecs-long path, differs in its properties but, in aggregate, can be used to extract low-frequency GW signals. We present a noise and sensitivity analysis to accompany the NANOGrav 15 yr data release and associated papers, along with an in-depth introduction to PTA noise models. As a first step in our analysis, we characterize each individual pulsar data set with three types of white-noise parameters and two red-noise parameters. These parameters, along with the timing model and, particularly, a piecewise-constant model for the time-variable dispersion measure, determine the sensitivity curve over the low-frequency GW band we are searching. We tabulate information for all of the pulsars in this data release and present some representative sensitivity curves. We then combine the individual pulsar sensitivities using a signal-to-noise ratio statistic to calculate the global sensitivity of the PTA to a stochastic background of GWs, obtaining a minimum noise characteristic strain of 7 × 10−15 at 5 nHz. A power-law-integrated analysis shows rough agreement with the amplitudes recovered in NANOGrav’s 15 yr GW background analysis. While our phenomenological noise model does not model all known physical effects explicitly, it provides an accurate characterization of the noise in the data while preserving sensitivity to multiple classes of GW signals.
Funder
National Science Foundation
Publisher
American Astronomical Society
Subject
Space and Planetary Science,Astronomy and Astrophysics
Cited by
60 articles.
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