Katalog Plus
Bibliothek der Frankfurt UAS
Bald neuer Katalog: sichern Sie sich schon vorab Ihre persönlichen Merklisten im Nutzerkonto: Anleitung.
Dieses Ergebnis aus BASE kann Gästen nicht angezeigt werden.  Login für vollen Zugriff.

The NANOGrav 12.5 yr Data Set: Search for Gravitational Wave Memory

Title: The NANOGrav 12.5 yr Data Set: Search for Gravitational Wave Memory
Authors: Agazie, G; Arzoumanian, Z; Baker, PT; Bécsy, B; Blecha, L; Blumer, H; Brazier, A; Brook, PR; Burke-Spolaor, S; Burnette, R; Case, R; Casey-Clyde, JA; Charisi, M; Chatterjee, S; Cohen, T; Cordes, JM; Cornish, NJ; Crawford, F; Cromartie, HT; DeCesar, ME; DeGan, D; Demorest, PB; Dolch, T; Drachler, B; Ellis, JA; Ferdman, RD; Ferrara, EC; Fiore, W; Fonseca, E; Freedman, GE; Garver-Daniels, N; Gentile, PA; Glaser, J; Good, DC; Gültekin, K; Hazboun, JS; Jennings, RJ; Johnson, AD; Jones, ML; Kaiser, AR; Kaplan, DL; Kelley, LZ; Key, JS; Laal, N; Lam, MT; Lamb, WG; W. Lazio, TJ; Lewandowska, N; Liu, T; Lorimer, DR; Luo, J; Lynch, RS; Ma, CP; Madison, DR; McEwen, A; McKee, JW; McLaughlin, MA; Meyers, PM; Mingarelli, CMF; Mitridate, A; Ng, C; Nice, DJ; Ocker, SK; Olum, KD; Pennucci, TT; Pol, NS; Ransom, SM; Ray, PS; Romano, JD; Sardesai, SC; Schmitz, K; Siemens, X; Simon, J; Siwek, MS; Sosa Fiscella, SV; Spiewak, R; Stairs, IH; Stinebring, DR; Stovall, K; Sun, JP; Swiggum, JK; Taylor, J; Taylor, SR; Turner, JE; Unal, C; Vallisneri, M; Vigeland, SJ; Wahl, HM; Witt, CA; Young, O
Publisher Information: IOP Publishing Ltd
Publication Year: 2024
Collection: The University of Melbourne: Digital Repository
Description: We present the results of a Bayesian search for gravitational wave (GW) memory in the NANOGrav 12.5 yr data set. We find no convincing evidence for any gravitational wave memory signals in this data set. We find a Bayes factor of 2.8 in favor of a model that includes a memory signal and common spatially uncorrelated red noise (CURN) compared to a model including only a CURN. However, further investigation shows that a disproportionate amount of support for the memory signal comes from three dubious pulsars. Using a more flexible red-noise model in these pulsars reduces the Bayes factor to 1.3. Having found no compelling evidence, we go on to place upper limits on the strain amplitude of GW memory events as a function of sky location and event epoch. These upper limits are computed using a signal model that assumes the existence of a common, spatially uncorrelated red noise in addition to a GW memory signal. The median strain upper limit as a function of sky position is approximately 3.3 × 10−14. We also find that there are some differences in the upper limits as a function of sky position centered around PSR J0613−0200. This suggests that this pulsar has some excess noise that can be confounded with GW memory. Finally, the upper limits as a function of burst epoch continue to improve at later epochs. This improvement is attributable to the continued growth of the pulsar timing array.
Document Type: article in journal/newspaper
Language: English
ISSN: 0004-637X
Relation: https://hdl.handle.net/11343/353991
Availability: https://hdl.handle.net/11343/353991
Rights: https://creativecommons.org/licenses/cc-by/4.0 ; cc-by
Accession Number: edsbas.D67D4422
Database: BASE