The NANOGrav 15 Yr Data Set: Removing Pulsars One by One from the Pulsar Timing Array
Evidence has emerged for a stochastic signal correlated among 67 pulsars within the 15 yr pulsar-timing data set compiled by the NANOGrav collaboration. Similar signals have been found in data from the European, Indian, Parkes, and Chinese pulsar timing arrays. This signal has been interpreted as in...
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Veröffentlicht in: | The Astrophysical journal 2025-01, Vol.978 (2), p.168 |
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creator | Agazie, Gabriella Anumarlapudi, Akash Archibald, Anne M. Arzoumanian, Zaven Baier, Jeremy G. Baker, Paul T. Bécsy, Bence Blecha, Laura Brazier, Adam Brook, Paul R. Burke-Spolaor, Sarah Casey-Clyde, J. Andrew Charisi, Maria Chatterjee, Shami Cohen, Tyler Cordes, James M. Cornish, Neil J. Crawford, Fronefield Cromartie, H. Thankful Crowter, Kathryn DeCesar, Megan E. Demorest, Paul B. Deng, Heling Dey, Lankeswar Dolch, Timothy Ferrara, Elizabeth C. Fiore, William Fonseca, Emmanuel Freedman, Gabriel E. Gardiner, Emiko C. Garver-Daniels, Nate Gersbach, Kyle A. Glaser, Joseph Good, Deborah C. Guertin, Lydia Gültekin, Kayhan Hazboun, Jeffrey S. Jennings, Ross J. Johnson, Aaron D. Jones, Megan L. Kaiser, Andrew R. Kaplan, David L. Kelley, Luke Zoltan Kerr, Matthew Key, Joey S. Laal, Nima Lam, Michael T. Larsen, Bjorn W. Lazio, T. Joseph Lewandowska, Natalia Liu, Tingting Lorimer, Duncan R. Luo, Jing Ma, Chung-Pei Madison, Dustin R. McEwen, Alexander McKee, James W. McLaughlin, Maura A. McMann, Natasha Meyers, Bradley W. Meyers, Patrick M. Middleton, Hannah Mingarelli, Chiara M. F. Mitridate, Andrea Moore, Christopher J. Ng, Cherry Nice, David J. Ocker, Stella Koch Olum, Ken D. Pennucci, Timothy T. Perera, Benetge B. P. Pol, Nihan S. Radovan, Henri A. Ray, Paul S. Romano, Joseph D. Runnoe, Jessie C. Saffer, Alexander Sardesai, Shashwat C. Schmiedekamp, Ann Schmiedekamp, Carl Schmitz, Kai Shapiro-Albert, Brent J. Siemens, Xavier Simon, Joseph Siwek, Magdalena S. Sosa Fiscella, Sophia V. Stairs, Ingrid H. Stinebring, Daniel R. Stovall, Kevin Susobhanan, Abhimanyu Swiggum, Joseph K. Taylor, Stephen R. Unal, Caner Vallisneri, Michele Vecchio, Alberto Vigeland, Sarah J. Wahl, Haley M. Witt, Caitlin A. Wright, David Young, Olivia |
description | Evidence has emerged for a stochastic signal correlated among 67 pulsars within the 15 yr pulsar-timing data set compiled by the NANOGrav collaboration. Similar signals have been found in data from the European, Indian, Parkes, and Chinese pulsar timing arrays. This signal has been interpreted as indicative of the presence of a nanohertz stochastic gravitational-wave background (GWB). To explore the internal consistency of this result, we investigate how the recovered signal strength changes as we remove the pulsars one by one from the data set. We calculate the signal strength using the (noise-marginalized) optimal statistic, a frequentist metric designed to measure the correlated excess power in the residuals of the arrival times of the radio pulses. We identify several features emerging from this analysis that were initially unexpected. The significance of these features, however, can only be assessed by comparing the real data to synthetic data sets. After conducting identical analyses on simulated data sets, we do not find anything inconsistent with the presence of a stochastic GWB in the NANOGrav 15 yr data. The methodologies developed here can offer additional tools for application to future, more sensitive data sets. While this analysis provides an internal consistency check of the NANOGrav results, it does not eliminate the necessity for additional investigations that could identify potential systematics or uncover unmodeled physical phenomena in the data. |
doi_str_mv | 10.3847/1538-4357/ad93aa |
format | Article |
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Andrew ; Charisi, Maria ; Chatterjee, Shami ; Cohen, Tyler ; Cordes, James M. ; Cornish, Neil J. ; Crawford, Fronefield ; Cromartie, H. Thankful ; Crowter, Kathryn ; DeCesar, Megan E. ; Demorest, Paul B. ; Deng, Heling ; Dey, Lankeswar ; Dolch, Timothy ; Ferrara, Elizabeth C. ; Fiore, William ; Fonseca, Emmanuel ; Freedman, Gabriel E. ; Gardiner, Emiko C. ; Garver-Daniels, Nate ; Gersbach, Kyle A. ; Glaser, Joseph ; Good, Deborah C. ; Guertin, Lydia ; Gültekin, Kayhan ; Hazboun, Jeffrey S. ; Jennings, Ross J. ; Johnson, Aaron D. ; Jones, Megan L. ; Kaiser, Andrew R. ; Kaplan, David L. ; Kelley, Luke Zoltan ; Kerr, Matthew ; Key, Joey S. ; Laal, Nima ; Lam, Michael T. ; Larsen, Bjorn ; W. Lazio, T. Joseph ; Lewandowska, Natalia ; Liu, Tingting ; Lorimer, Duncan R. ; Luo, Jing ; Ma, Chung-Pei ; Madison, Dustin R. ; McEwen, Alexander ; McKee, James W. ; McLaughlin, Maura A. ; McMann, Natasha ; Meyers, Bradley W. ; Meyers, Patrick M. ; Middleton, Hannah ; Mingarelli, Chiara M. F. ; Mitridate, Andrea ; Moore, Christopher J. ; Ng, Cherry ; Nice, David J. ; Ocker, Stella Koch ; Olum, Ken D. ; Pennucci, Timothy T. ; Perera, Benetge B. P. ; Pol, Nihan S. ; Radovan, Henri A. ; Ray, Paul S. ; Romano, Joseph D. ; Runnoe, Jessie C. ; Saffer, Alexander ; Sardesai, Shashwat C. ; Schmiedekamp, Ann ; Schmiedekamp, Carl ; Schmitz, Kai ; Shapiro-Albert, Brent J. ; Siemens, Xavier ; Simon, Joseph ; Siwek, Magdalena S. ; Sosa Fiscella, Sophia V. ; Stairs, Ingrid H. ; Stinebring, Daniel R. ; Stovall, Kevin ; Susobhanan, Abhimanyu ; Swiggum, Joseph K. ; Taylor, Stephen R. ; Unal, Caner ; Vallisneri, Michele ; Vecchio, Alberto ; Vigeland, Sarah J. ; Wahl, Haley M. ; Witt, Caitlin A. ; Wright, David ; Young, Olivia</creator><creatorcontrib>Agazie, Gabriella ; Anumarlapudi, Akash ; Archibald, Anne M. ; Arzoumanian, Zaven ; Baier, Jeremy G. ; Baker, Paul T. ; Bécsy, Bence ; Blecha, Laura ; Brazier, Adam ; Brook, Paul R. ; Burke-Spolaor, Sarah ; Casey-Clyde, J. Andrew ; Charisi, Maria ; Chatterjee, Shami ; Cohen, Tyler ; Cordes, James M. ; Cornish, Neil J. ; Crawford, Fronefield ; Cromartie, H. Thankful ; Crowter, Kathryn ; DeCesar, Megan E. ; Demorest, Paul B. ; Deng, Heling ; Dey, Lankeswar ; Dolch, Timothy ; Ferrara, Elizabeth C. ; Fiore, William ; Fonseca, Emmanuel ; Freedman, Gabriel E. ; Gardiner, Emiko C. ; Garver-Daniels, Nate ; Gersbach, Kyle A. ; Glaser, Joseph ; Good, Deborah C. ; Guertin, Lydia ; Gültekin, Kayhan ; Hazboun, Jeffrey S. ; Jennings, Ross J. ; Johnson, Aaron D. ; Jones, Megan L. ; Kaiser, Andrew R. ; Kaplan, David L. ; Kelley, Luke Zoltan ; Kerr, Matthew ; Key, Joey S. ; Laal, Nima ; Lam, Michael T. ; Larsen, Bjorn ; W. Lazio, T. Joseph ; Lewandowska, Natalia ; Liu, Tingting ; Lorimer, Duncan R. ; Luo, Jing ; Ma, Chung-Pei ; Madison, Dustin R. ; McEwen, Alexander ; McKee, James W. ; McLaughlin, Maura A. ; McMann, Natasha ; Meyers, Bradley W. ; Meyers, Patrick M. ; Middleton, Hannah ; Mingarelli, Chiara M. F. ; Mitridate, Andrea ; Moore, Christopher J. ; Ng, Cherry ; Nice, David J. ; Ocker, Stella Koch ; Olum, Ken D. ; Pennucci, Timothy T. ; Perera, Benetge B. P. ; Pol, Nihan S. ; Radovan, Henri A. ; Ray, Paul S. ; Romano, Joseph D. ; Runnoe, Jessie C. ; Saffer, Alexander ; Sardesai, Shashwat C. ; Schmiedekamp, Ann ; Schmiedekamp, Carl ; Schmitz, Kai ; Shapiro-Albert, Brent J. ; Siemens, Xavier ; Simon, Joseph ; Siwek, Magdalena S. ; Sosa Fiscella, Sophia V. ; Stairs, Ingrid H. ; Stinebring, Daniel R. ; Stovall, Kevin ; Susobhanan, Abhimanyu ; Swiggum, Joseph K. ; Taylor, Stephen R. ; Unal, Caner ; Vallisneri, Michele ; Vecchio, Alberto ; Vigeland, Sarah J. ; Wahl, Haley M. ; Witt, Caitlin A. ; Wright, David ; Young, Olivia</creatorcontrib><description>Evidence has emerged for a stochastic signal correlated among 67 pulsars within the 15 yr pulsar-timing data set compiled by the NANOGrav collaboration. Similar signals have been found in data from the European, Indian, Parkes, and Chinese pulsar timing arrays. This signal has been interpreted as indicative of the presence of a nanohertz stochastic gravitational-wave background (GWB). To explore the internal consistency of this result, we investigate how the recovered signal strength changes as we remove the pulsars one by one from the data set. We calculate the signal strength using the (noise-marginalized) optimal statistic, a frequentist metric designed to measure the correlated excess power in the residuals of the arrival times of the radio pulses. We identify several features emerging from this analysis that were initially unexpected. The significance of these features, however, can only be assessed by comparing the real data to synthetic data sets. After conducting identical analyses on simulated data sets, we do not find anything inconsistent with the presence of a stochastic GWB in the NANOGrav 15 yr data. The methodologies developed here can offer additional tools for application to future, more sensitive data sets. While this analysis provides an internal consistency check of the NANOGrav results, it does not eliminate the necessity for additional investigations that could identify potential systematics or uncover unmodeled physical phenomena in the data.</description><identifier>ISSN: 0004-637X</identifier><identifier>EISSN: 1538-4357</identifier><identifier>DOI: 10.3847/1538-4357/ad93aa</identifier><language>eng</language><publisher>Philadelphia: The American Astronomical Society</publisher><subject>Arrays ; Background noise ; Data analysis ; Datasets ; Gravitational wave astronomy ; Gravitational waves ; Millisecond pulsars ; Noise measurement ; Pulsars ; Radio pulsars ; Signal strength ; Supermassive black holes ; Synthetic data ; Systematics</subject><ispartof>The Astrophysical journal, 2025-01, Vol.978 (2), p.168</ispartof><rights>2025. The Author(s). 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P.</creatorcontrib><creatorcontrib>Pol, Nihan S.</creatorcontrib><creatorcontrib>Radovan, Henri A.</creatorcontrib><creatorcontrib>Ray, Paul S.</creatorcontrib><creatorcontrib>Romano, Joseph D.</creatorcontrib><creatorcontrib>Runnoe, Jessie C.</creatorcontrib><creatorcontrib>Saffer, Alexander</creatorcontrib><creatorcontrib>Sardesai, Shashwat C.</creatorcontrib><creatorcontrib>Schmiedekamp, Ann</creatorcontrib><creatorcontrib>Schmiedekamp, Carl</creatorcontrib><creatorcontrib>Schmitz, Kai</creatorcontrib><creatorcontrib>Shapiro-Albert, Brent J.</creatorcontrib><creatorcontrib>Siemens, Xavier</creatorcontrib><creatorcontrib>Simon, Joseph</creatorcontrib><creatorcontrib>Siwek, Magdalena S.</creatorcontrib><creatorcontrib>Sosa Fiscella, Sophia V.</creatorcontrib><creatorcontrib>Stairs, Ingrid H.</creatorcontrib><creatorcontrib>Stinebring, Daniel R.</creatorcontrib><creatorcontrib>Stovall, Kevin</creatorcontrib><creatorcontrib>Susobhanan, Abhimanyu</creatorcontrib><creatorcontrib>Swiggum, Joseph K.</creatorcontrib><creatorcontrib>Taylor, Stephen R.</creatorcontrib><creatorcontrib>Unal, Caner</creatorcontrib><creatorcontrib>Vallisneri, Michele</creatorcontrib><creatorcontrib>Vecchio, Alberto</creatorcontrib><creatorcontrib>Vigeland, Sarah J.</creatorcontrib><creatorcontrib>Wahl, Haley M.</creatorcontrib><creatorcontrib>Witt, Caitlin A.</creatorcontrib><creatorcontrib>Wright, David</creatorcontrib><creatorcontrib>Young, Olivia</creatorcontrib><title>The NANOGrav 15 Yr Data Set: Removing Pulsars One by One from the Pulsar Timing Array</title><title>The Astrophysical journal</title><addtitle>APJ</addtitle><addtitle>Astrophys. J</addtitle><description>Evidence has emerged for a stochastic signal correlated among 67 pulsars within the 15 yr pulsar-timing data set compiled by the NANOGrav collaboration. Similar signals have been found in data from the European, Indian, Parkes, and Chinese pulsar timing arrays. This signal has been interpreted as indicative of the presence of a nanohertz stochastic gravitational-wave background (GWB). To explore the internal consistency of this result, we investigate how the recovered signal strength changes as we remove the pulsars one by one from the data set. We calculate the signal strength using the (noise-marginalized) optimal statistic, a frequentist metric designed to measure the correlated excess power in the residuals of the arrival times of the radio pulses. We identify several features emerging from this analysis that were initially unexpected. The significance of these features, however, can only be assessed by comparing the real data to synthetic data sets. After conducting identical analyses on simulated data sets, we do not find anything inconsistent with the presence of a stochastic GWB in the NANOGrav 15 yr data. The methodologies developed here can offer additional tools for application to future, more sensitive data sets. While this analysis provides an internal consistency check of the NANOGrav results, it does not eliminate the necessity for additional investigations that could identify potential systematics or uncover unmodeled physical phenomena in the data.</description><subject>Arrays</subject><subject>Background noise</subject><subject>Data analysis</subject><subject>Datasets</subject><subject>Gravitational wave astronomy</subject><subject>Gravitational waves</subject><subject>Millisecond pulsars</subject><subject>Noise measurement</subject><subject>Pulsars</subject><subject>Radio pulsars</subject><subject>Signal strength</subject><subject>Supermassive black holes</subject><subject>Synthetic data</subject><subject>Systematics</subject><issn>0004-637X</issn><issn>1538-4357</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2025</creationdate><recordtype>article</recordtype><sourceid>O3W</sourceid><sourceid>DOA</sourceid><recordid>eNp1kc1Lw0AQxRdRsFbvHhfEm7H7md14K37UgljRCnpaJptNTWm7cZMW-t-bGKkXPQ07-95vhjcInVJyybVQAyq5jgSXagBZwgH2UG_X2kc9QoiIYq7eDtFRVc3bJ0uSHnqdfjj8OHycjAJsMJX4PeAbqAG_uPoKP7ul3xSrGX5aLyoIFZ6sHE633yUPfonrxt394WmxbJXDEGB7jA5yWFTu5Kf20fTudnp9Hz1MRuPr4UNkmRAQcUekkJJbwbTSiklBXZrGmdOUS5YSyoVghDPJVKJyoTXLlEi5oFzbWEneR-MOm3mYmzIUSwhb46Ew3w0fZgZCXdiFM0xmSmeMsCyJBQgNVFKbCGulsrzBNqyzjlUG_7l2VW3mfh1WzfaG02axJkfWqkinssFXVXD5biolpr2DaUM3beimu0NjOe8shS9_mVDOTaK0YYbG2pRZ3ugu_tD9i_0CWOaQzQ</recordid><startdate>20250101</startdate><enddate>20250101</enddate><creator>Agazie, Gabriella</creator><creator>Anumarlapudi, Akash</creator><creator>Archibald, Anne M.</creator><creator>Arzoumanian, Zaven</creator><creator>Baier, Jeremy G.</creator><creator>Baker, Paul T.</creator><creator>Bécsy, Bence</creator><creator>Blecha, Laura</creator><creator>Brazier, Adam</creator><creator>Brook, Paul R.</creator><creator>Burke-Spolaor, Sarah</creator><creator>Casey-Clyde, J. 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NANOGrav 15 Yr Data Set: Removing Pulsars One by One from the Pulsar Timing Array</title><author>Agazie, Gabriella ; Anumarlapudi, Akash ; Archibald, Anne M. ; Arzoumanian, Zaven ; Baier, Jeremy G. ; Baker, Paul T. ; Bécsy, Bence ; Blecha, Laura ; Brazier, Adam ; Brook, Paul R. ; Burke-Spolaor, Sarah ; Casey-Clyde, J. Andrew ; Charisi, Maria ; Chatterjee, Shami ; Cohen, Tyler ; Cordes, James M. ; Cornish, Neil J. ; Crawford, Fronefield ; Cromartie, H. Thankful ; Crowter, Kathryn ; DeCesar, Megan E. ; Demorest, Paul B. ; Deng, Heling ; Dey, Lankeswar ; Dolch, Timothy ; Ferrara, Elizabeth C. ; Fiore, William ; Fonseca, Emmanuel ; Freedman, Gabriel E. ; Gardiner, Emiko C. ; Garver-Daniels, Nate ; Gersbach, Kyle A. ; Glaser, Joseph ; Good, Deborah C. ; Guertin, Lydia ; Gültekin, Kayhan ; Hazboun, Jeffrey S. ; Jennings, Ross J. ; Johnson, Aaron D. ; Jones, Megan L. ; Kaiser, Andrew R. ; Kaplan, David L. ; Kelley, Luke Zoltan ; Kerr, Matthew ; Key, Joey S. ; Laal, Nima ; Lam, Michael T. ; Larsen, Bjorn ; W. Lazio, T. Joseph ; Lewandowska, Natalia ; Liu, Tingting ; Lorimer, Duncan R. ; Luo, Jing ; Ma, Chung-Pei ; Madison, Dustin R. ; McEwen, Alexander ; McKee, James W. ; McLaughlin, Maura A. ; McMann, Natasha ; Meyers, Bradley W. ; Meyers, Patrick M. ; Middleton, Hannah ; Mingarelli, Chiara M. F. ; Mitridate, Andrea ; Moore, Christopher J. ; Ng, Cherry ; Nice, David J. ; Ocker, Stella Koch ; Olum, Ken D. ; Pennucci, Timothy T. ; Perera, Benetge B. P. ; Pol, Nihan S. ; Radovan, Henri A. ; Ray, Paul S. ; Romano, Joseph D. ; Runnoe, Jessie C. ; Saffer, Alexander ; Sardesai, Shashwat C. ; Schmiedekamp, Ann ; Schmiedekamp, Carl ; Schmitz, Kai ; Shapiro-Albert, Brent J. ; Siemens, Xavier ; Simon, Joseph ; Siwek, Magdalena S. ; Sosa Fiscella, Sophia V. ; Stairs, Ingrid H. ; Stinebring, Daniel R. ; Stovall, Kevin ; Susobhanan, Abhimanyu ; Swiggum, Joseph K. ; Taylor, Stephen R. ; Unal, Caner ; Vallisneri, Michele ; Vecchio, Alberto ; Vigeland, Sarah J. ; Wahl, Haley M. ; Witt, Caitlin A. ; Wright, David ; Young, Olivia</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c244a-3e054553c4287872541ebb6de81352b01344203252797f4882d74b34138c6753</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2025</creationdate><topic>Arrays</topic><topic>Background noise</topic><topic>Data analysis</topic><topic>Datasets</topic><topic>Gravitational wave astronomy</topic><topic>Gravitational waves</topic><topic>Millisecond pulsars</topic><topic>Noise measurement</topic><topic>Pulsars</topic><topic>Radio pulsars</topic><topic>Signal strength</topic><topic>Supermassive black holes</topic><topic>Synthetic data</topic><topic>Systematics</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Agazie, Gabriella</creatorcontrib><creatorcontrib>Anumarlapudi, Akash</creatorcontrib><creatorcontrib>Archibald, Anne M.</creatorcontrib><creatorcontrib>Arzoumanian, Zaven</creatorcontrib><creatorcontrib>Baier, Jeremy G.</creatorcontrib><creatorcontrib>Baker, Paul T.</creatorcontrib><creatorcontrib>Bécsy, Bence</creatorcontrib><creatorcontrib>Blecha, Laura</creatorcontrib><creatorcontrib>Brazier, Adam</creatorcontrib><creatorcontrib>Brook, Paul R.</creatorcontrib><creatorcontrib>Burke-Spolaor, Sarah</creatorcontrib><creatorcontrib>Casey-Clyde, J. 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Andrew</au><au>Charisi, Maria</au><au>Chatterjee, Shami</au><au>Cohen, Tyler</au><au>Cordes, James M.</au><au>Cornish, Neil J.</au><au>Crawford, Fronefield</au><au>Cromartie, H. Thankful</au><au>Crowter, Kathryn</au><au>DeCesar, Megan E.</au><au>Demorest, Paul B.</au><au>Deng, Heling</au><au>Dey, Lankeswar</au><au>Dolch, Timothy</au><au>Ferrara, Elizabeth C.</au><au>Fiore, William</au><au>Fonseca, Emmanuel</au><au>Freedman, Gabriel E.</au><au>Gardiner, Emiko C.</au><au>Garver-Daniels, Nate</au><au>Gersbach, Kyle A.</au><au>Glaser, Joseph</au><au>Good, Deborah C.</au><au>Guertin, Lydia</au><au>Gültekin, Kayhan</au><au>Hazboun, Jeffrey S.</au><au>Jennings, Ross J.</au><au>Johnson, Aaron D.</au><au>Jones, Megan L.</au><au>Kaiser, Andrew R.</au><au>Kaplan, David L.</au><au>Kelley, Luke Zoltan</au><au>Kerr, Matthew</au><au>Key, Joey S.</au><au>Laal, Nima</au><au>Lam, Michael T.</au><au>Larsen, Bjorn</au><au>W. Lazio, T. Joseph</au><au>Lewandowska, Natalia</au><au>Liu, Tingting</au><au>Lorimer, Duncan R.</au><au>Luo, Jing</au><au>Ma, Chung-Pei</au><au>Madison, Dustin R.</au><au>McEwen, Alexander</au><au>McKee, James W.</au><au>McLaughlin, Maura A.</au><au>McMann, Natasha</au><au>Meyers, Bradley W.</au><au>Meyers, Patrick M.</au><au>Middleton, Hannah</au><au>Mingarelli, Chiara M. F.</au><au>Mitridate, Andrea</au><au>Moore, Christopher J.</au><au>Ng, Cherry</au><au>Nice, David J.</au><au>Ocker, Stella Koch</au><au>Olum, Ken D.</au><au>Pennucci, Timothy T.</au><au>Perera, Benetge B. P.</au><au>Pol, Nihan S.</au><au>Radovan, Henri A.</au><au>Ray, Paul S.</au><au>Romano, Joseph D.</au><au>Runnoe, Jessie C.</au><au>Saffer, Alexander</au><au>Sardesai, Shashwat C.</au><au>Schmiedekamp, Ann</au><au>Schmiedekamp, Carl</au><au>Schmitz, Kai</au><au>Shapiro-Albert, Brent J.</au><au>Siemens, Xavier</au><au>Simon, Joseph</au><au>Siwek, Magdalena S.</au><au>Sosa Fiscella, Sophia V.</au><au>Stairs, Ingrid H.</au><au>Stinebring, Daniel R.</au><au>Stovall, Kevin</au><au>Susobhanan, Abhimanyu</au><au>Swiggum, Joseph K.</au><au>Taylor, Stephen R.</au><au>Unal, Caner</au><au>Vallisneri, Michele</au><au>Vecchio, Alberto</au><au>Vigeland, Sarah J.</au><au>Wahl, Haley M.</au><au>Witt, Caitlin A.</au><au>Wright, David</au><au>Young, Olivia</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>The NANOGrav 15 Yr Data Set: Removing Pulsars One by One from the Pulsar Timing Array</atitle><jtitle>The Astrophysical journal</jtitle><stitle>APJ</stitle><addtitle>Astrophys. J</addtitle><date>2025-01-01</date><risdate>2025</risdate><volume>978</volume><issue>2</issue><spage>168</spage><pages>168-</pages><issn>0004-637X</issn><eissn>1538-4357</eissn><abstract>Evidence has emerged for a stochastic signal correlated among 67 pulsars within the 15 yr pulsar-timing data set compiled by the NANOGrav collaboration. Similar signals have been found in data from the European, Indian, Parkes, and Chinese pulsar timing arrays. This signal has been interpreted as indicative of the presence of a nanohertz stochastic gravitational-wave background (GWB). To explore the internal consistency of this result, we investigate how the recovered signal strength changes as we remove the pulsars one by one from the data set. We calculate the signal strength using the (noise-marginalized) optimal statistic, a frequentist metric designed to measure the correlated excess power in the residuals of the arrival times of the radio pulses. We identify several features emerging from this analysis that were initially unexpected. The significance of these features, however, can only be assessed by comparing the real data to synthetic data sets. After conducting identical analyses on simulated data sets, we do not find anything inconsistent with the presence of a stochastic GWB in the NANOGrav 15 yr data. The methodologies developed here can offer additional tools for application to future, more sensitive data sets. While this analysis provides an internal consistency check of the NANOGrav results, it does not eliminate the necessity for additional investigations that could identify potential systematics or uncover unmodeled physical phenomena in the data.</abstract><cop>Philadelphia</cop><pub>The American Astronomical 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fulltext | fulltext |
identifier | ISSN: 0004-637X |
ispartof | The Astrophysical journal, 2025-01, Vol.978 (2), p.168 |
issn | 0004-637X 1538-4357 |
language | eng |
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source | IOP Publishing Free Content; DOAJ Directory of Open Access Journals; EZB-FREE-00999 freely available EZB journals; Alma/SFX Local Collection |
subjects | Arrays Background noise Data analysis Datasets Gravitational wave astronomy Gravitational waves Millisecond pulsars Noise measurement Pulsars Radio pulsars Signal strength Supermassive black holes Synthetic data Systematics |
title | The NANOGrav 15 Yr Data Set: Removing Pulsars One by One from the Pulsar Timing Array |
url | https://sfx.bib-bvb.de/sfx_tum?ctx_ver=Z39.88-2004&ctx_enc=info:ofi/enc:UTF-8&ctx_tim=2025-01-29T22%3A40%3A58IST&url_ver=Z39.88-2004&url_ctx_fmt=infofi/fmt:kev:mtx:ctx&rfr_id=info:sid/primo.exlibrisgroup.com:primo3-Article-proquest_cross&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.genre=article&rft.atitle=The%20NANOGrav%2015%20Yr%20Data%20Set:%20Removing%20Pulsars%20One%20by%20One%20from%20the%20Pulsar%20Timing%20Array&rft.jtitle=The%20Astrophysical%20journal&rft.au=Agazie,%20Gabriella&rft.date=2025-01-01&rft.volume=978&rft.issue=2&rft.spage=168&rft.pages=168-&rft.issn=0004-637X&rft.eissn=1538-4357&rft_id=info:doi/10.3847/1538-4357/ad93aa&rft_dat=%3Cproquest_cross%3E3154143527%3C/proquest_cross%3E%3Curl%3E%3C/url%3E&disable_directlink=true&sfx.directlink=off&sfx.report_link=0&rft_id=info:oai/&rft_pqid=3154143527&rft_id=info:pmid/&rft_doaj_id=oai_doaj_org_article_25d78d202d964a48a151c94cc57c32d7&rfr_iscdi=true |