Tracking the X-Ray Polarization of the Black Hole Transient Swift J1727.8–1613 during a State Transition
We report on an observational campaign on the bright black hole (BH) X-ray binary Swift J1727.8–1613 centered around five observations by the Imaging X-ray Polarimetry Explorer. These observations track for the first time the evolution of the X-ray polarization of a BH X-ray binary across a hard to...
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creator | Ingram, Adam Bollemeijer, Niek Veledina, Alexandra Dovčiak, Michal Poutanen, Juri Egron, Elise Russell, Thomas D. Trushkin, Sergei A. Negro, Michela Ratheesh, Ajay Capitanio, Fiamma Connors, Riley Neilsen, Joseph Kraus, Alexander Iacolina, Maria Noemi Pellizzoni, Alberto Pilia, Maura Carotenuto, Francesco Matt, Giorgio Mastroserio, Guglielmo Kaaret, Philip Bianchi, Stefano García, Javier A. Bachetti, Matteo Wu, Kinwah Costa, Enrico Ewing, Melissa Kravtsov, Vadim Krawczynski, Henric Loktev, Vladislav Marinucci, Andrea Marra, Lorenzo Mikušincová, Romana Nathan, Edward Parra, Maxime Petrucci, Pierre-Olivier Righini, Simona Soffitta, Paolo Steiner, James F. Svoboda, Jiří Tombesi, Francesco Tugliani, Stefano Ursini, Francesco Yang, Yi-Jung Zane, Silvia Zhang, Wenda Agudo, Iván Antonelli, Lucio A. Baldini, Luca Baumgartner, Wayne H. Bellazzini, Ronaldo Bongiorno, Stephen D. Bonino, Raffaella Brez, Alessandro Bucciantini, Niccolò Castellano, Simone Cavazzuti, Elisabetta Chen, Chien-Ting Ciprini, Stefano de Rosa, Alessandra del Monte, Ettore Di Gesu, Laura Di Lalla, Niccolò Di Marco, Alessandro Donnarumma, Immacolata Doroshenko, Victor Ehlert, Steven R. Enoto, Teruaki Evangelista, Yuri Fabiani, Sergio Ferrazzoli, Riccardo Gunji, Shuichi Hayashida, Kiyoshi Heyl, Jeremy Iwakiri, Wataru Jorstad, Svetlana G. Karas, Vladimir Kislat, Fabian Kitaguchi, Takao Kolodziejczak, Jeffery J. La Monaca, Fabio Latronico, Luca Liodakis, Ioannis Maldera, Simone Manfreda, Alberto Marin, Frédéric Marscher, Alan P. Marshall, Herman L. Massaro, Francesco Mitsuishi, Ikuyuki Mizuno, Tsunefumi Muleri, Fabio Ng, Chi-Yung O'Dell, Stephen L. Omodei, Nicola Oppedisano, Chiara Papitto, Alessandro Pavlov, George G. Peirson, Abel L. Perri, Matteo |
description | We report on an observational campaign on the bright black hole (BH) X-ray binary Swift J1727.8–1613 centered around five observations by the Imaging X-ray Polarimetry Explorer. These observations track for the first time the evolution of the X-ray polarization of a BH X-ray binary across a hard to soft state transition. The 2–8 keV polarization degree decreased from ∼4% to ∼3% across the five observations, but the polarization angle remained oriented in the north–south direction throughout. Based on observations with the Australia Telescope Compact Array, we find that the intrinsic 7.25 GHz radio polarization aligns with the X-ray polarization. Assuming the radio polarization aligns with the jet direction (which can be tested in the future with higher-spatial-resolution images of the jet), our results imply that the X-ray corona is extended in the disk plane, rather than along the jet axis, for the entire hard intermediate state. This in turn implies that the long (≳10 ms) soft lags that we measure with the Neutron star Interior Composition ExploreR are dominated by processes other than pure light-crossing delays. Moreover, we find that the evolution of the soft lag amplitude with spectral state does not follow the trend seen for other sources, implying that Swift J1727.8–1613 is a member of a hitherto undersampled subpopulation. |
doi_str_mv | 10.3847/1538-4357/ad3faf |
format | Article |
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Bollemeijer, Niek ; Veledina, Alexandra ; Dovčiak, Michal ; Poutanen, Juri ; Egron, Elise ; Russell, Thomas D. ; Trushkin, Sergei A. ; Negro, Michela ; Ratheesh, Ajay ; Capitanio, Fiamma ; Connors, Riley ; Neilsen, Joseph ; Kraus, Alexander ; Iacolina, Maria Noemi ; Pellizzoni, Alberto ; Pilia, Maura ; Carotenuto, Francesco ; Matt, Giorgio ; Mastroserio, Guglielmo ; Kaaret, Philip ; Bianchi, Stefano ; García, Javier A. ; Bachetti, Matteo ; Wu, Kinwah ; Costa, Enrico ; Ewing, Melissa ; Kravtsov, Vadim ; Krawczynski, Henric ; Loktev, Vladislav ; Marinucci, Andrea ; Marra, Lorenzo ; Mikušincová, Romana ; Nathan, Edward ; Parra, Maxime ; Petrucci, Pierre-Olivier ; Righini, Simona ; Soffitta, Paolo ; Steiner, James F. ; Svoboda, Jiří ; Tombesi, Francesco ; Tugliani, Stefano ; Ursini, Francesco ; Yang, Yi-Jung ; Zane, Silvia ; Zhang, Wenda ; Agudo, Iván ; Antonelli, Lucio A. ; Baldini, Luca ; Baumgartner, Wayne H. ; Bellazzini, Ronaldo ; Bongiorno, Stephen D. ; Bonino, Raffaella ; Brez, Alessandro ; Bucciantini, Niccolò ; Castellano, Simone ; Cavazzuti, Elisabetta ; Chen, Chien-Ting ; Ciprini, Stefano ; de Rosa, Alessandra ; del Monte, Ettore ; Di Gesu, Laura ; Di Lalla, Niccolò ; Di Marco, Alessandro ; Donnarumma, Immacolata ; Doroshenko, Victor ; Ehlert, Steven R. ; Enoto, Teruaki ; Evangelista, Yuri ; Fabiani, Sergio ; Ferrazzoli, Riccardo ; Gunji, Shuichi ; Hayashida, Kiyoshi ; Heyl, Jeremy ; Iwakiri, Wataru ; Jorstad, Svetlana G. ; Karas, Vladimir ; Kislat, Fabian ; Kitaguchi, Takao ; Kolodziejczak, Jeffery J. ; La Monaca, Fabio ; Latronico, Luca ; Liodakis, Ioannis ; Maldera, Simone ; Manfreda, Alberto ; Marin, Frédéric ; Marscher, Alan P. ; Marshall, Herman L. ; Massaro, Francesco ; Mitsuishi, Ikuyuki ; Mizuno, Tsunefumi ; Muleri, Fabio ; Ng, Chi-Yung ; O'Dell, Stephen L. ; Omodei, Nicola ; Oppedisano, Chiara ; Papitto, Alessandro ; Pavlov, George G. ; Peirson, Abel L. ; Perri, Matteo</creator><creatorcontrib>Ingram, Adam ; Bollemeijer, Niek ; Veledina, Alexandra ; Dovčiak, Michal ; Poutanen, Juri ; Egron, Elise ; Russell, Thomas D. ; Trushkin, Sergei A. ; Negro, Michela ; Ratheesh, Ajay ; Capitanio, Fiamma ; Connors, Riley ; Neilsen, Joseph ; Kraus, Alexander ; Iacolina, Maria Noemi ; Pellizzoni, Alberto ; Pilia, Maura ; Carotenuto, Francesco ; Matt, Giorgio ; Mastroserio, Guglielmo ; Kaaret, Philip ; Bianchi, Stefano ; García, Javier A. ; Bachetti, Matteo ; Wu, Kinwah ; Costa, Enrico ; Ewing, Melissa ; Kravtsov, Vadim ; Krawczynski, Henric ; Loktev, Vladislav ; Marinucci, Andrea ; Marra, Lorenzo ; Mikušincová, Romana ; Nathan, Edward ; Parra, Maxime ; Petrucci, Pierre-Olivier ; Righini, Simona ; Soffitta, Paolo ; Steiner, James F. ; Svoboda, Jiří ; Tombesi, Francesco ; Tugliani, Stefano ; Ursini, Francesco ; Yang, Yi-Jung ; Zane, Silvia ; Zhang, Wenda ; Agudo, Iván ; Antonelli, Lucio A. ; Baldini, Luca ; Baumgartner, Wayne H. ; Bellazzini, Ronaldo ; Bongiorno, Stephen D. ; Bonino, Raffaella ; Brez, Alessandro ; Bucciantini, Niccolò ; Castellano, Simone ; Cavazzuti, Elisabetta ; Chen, Chien-Ting ; Ciprini, Stefano ; de Rosa, Alessandra ; del Monte, Ettore ; Di Gesu, Laura ; Di Lalla, Niccolò ; Di Marco, Alessandro ; Donnarumma, Immacolata ; Doroshenko, Victor ; Ehlert, Steven R. ; Enoto, Teruaki ; Evangelista, Yuri ; Fabiani, Sergio ; Ferrazzoli, Riccardo ; Gunji, Shuichi ; Hayashida, Kiyoshi ; Heyl, Jeremy ; Iwakiri, Wataru ; Jorstad, Svetlana G. ; Karas, Vladimir ; Kislat, Fabian ; Kitaguchi, Takao ; Kolodziejczak, Jeffery J. ; La Monaca, Fabio ; Latronico, Luca ; Liodakis, Ioannis ; Maldera, Simone ; Manfreda, Alberto ; Marin, Frédéric ; Marscher, Alan P. ; Marshall, Herman L. ; Massaro, Francesco ; Mitsuishi, Ikuyuki ; Mizuno, Tsunefumi ; Muleri, Fabio ; Ng, Chi-Yung ; O'Dell, Stephen L. ; Omodei, Nicola ; Oppedisano, Chiara ; Papitto, Alessandro ; Pavlov, George G. ; Peirson, Abel L. ; Perri, Matteo</creatorcontrib><description>We report on an observational campaign on the bright black hole (BH) X-ray binary Swift J1727.8–1613 centered around five observations by the Imaging X-ray Polarimetry Explorer. These observations track for the first time the evolution of the X-ray polarization of a BH X-ray binary across a hard to soft state transition. The 2–8 keV polarization degree decreased from ∼4% to ∼3% across the five observations, but the polarization angle remained oriented in the north–south direction throughout. Based on observations with the Australia Telescope Compact Array, we find that the intrinsic 7.25 GHz radio polarization aligns with the X-ray polarization. Assuming the radio polarization aligns with the jet direction (which can be tested in the future with higher-spatial-resolution images of the jet), our results imply that the X-ray corona is extended in the disk plane, rather than along the jet axis, for the entire hard intermediate state. This in turn implies that the long (≳10 ms) soft lags that we measure with the Neutron star Interior Composition ExploreR are dominated by processes other than pure light-crossing delays. 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L.</creatorcontrib><creatorcontrib>Perri, Matteo</creatorcontrib><title>Tracking the X-Ray Polarization of the Black Hole Transient Swift J1727.8–1613 during a State Transition</title><title>The Astrophysical journal</title><description>We report on an observational campaign on the bright black hole (BH) X-ray binary Swift J1727.8–1613 centered around five observations by the Imaging X-ray Polarimetry Explorer. These observations track for the first time the evolution of the X-ray polarization of a BH X-ray binary across a hard to soft state transition. The 2–8 keV polarization degree decreased from ∼4% to ∼3% across the five observations, but the polarization angle remained oriented in the north–south direction throughout. Based on observations with the Australia Telescope Compact Array, we find that the intrinsic 7.25 GHz radio polarization aligns with the X-ray polarization. Assuming the radio polarization aligns with the jet direction (which can be tested in the future with higher-spatial-resolution images of the jet), our results imply that the X-ray corona is extended in the disk plane, rather than along the jet axis, for the entire hard intermediate state. This in turn implies that the long (≳10 ms) soft lags that we measure with the Neutron star Interior Composition ExploreR are dominated by processes other than pure light-crossing delays. Moreover, we find that the evolution of the soft lag amplitude with spectral state does not follow the trend seen for other sources, implying that Swift J1727.8–1613 is a member of a hitherto undersampled subpopulation.</description><subject>Sciences of the Universe</subject><issn>0004-637X</issn><issn>1538-4357</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2024</creationdate><recordtype>article</recordtype><recordid>eNpjYJAwNNAztjAx1zc0NbbQNTE2NddPTDFOS0xjYuCEC7EwcBoYGJjomhmbR3AwcBUXZ4G4RpaWnAxZIUWJydmZeekKJRmpChG6QYmVCgH5OYlFmVWJJZn5eQr5aWAZpxygMgWP_JxUBaCOvOLM1LwSheDyzLQSBS9DcyNzPYtHDZMNzQyNFVJKi0DGJSoElySWwFSDjOJhYE1LzClO5YXS3Axabq4hzh66GYk58QVFmbmJRZXx-YmZ8R6OPvGZecWl8QYmZkDnm1iUGRqTpBgAUDVS5A</recordid><startdate>2024</startdate><enddate>2024</enddate><creator>Ingram, Adam</creator><creator>Bollemeijer, Niek</creator><creator>Veledina, Alexandra</creator><creator>Dovčiak, Michal</creator><creator>Poutanen, Juri</creator><creator>Egron, 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Francesco ; Matt, Giorgio ; Mastroserio, Guglielmo ; Kaaret, Philip ; Bianchi, Stefano ; García, Javier A. ; Bachetti, Matteo ; Wu, Kinwah ; Costa, Enrico ; Ewing, Melissa ; Kravtsov, Vadim ; Krawczynski, Henric ; Loktev, Vladislav ; Marinucci, Andrea ; Marra, Lorenzo ; Mikušincová, Romana ; Nathan, Edward ; Parra, Maxime ; Petrucci, Pierre-Olivier ; Righini, Simona ; Soffitta, Paolo ; Steiner, James F. ; Svoboda, Jiří ; Tombesi, Francesco ; Tugliani, Stefano ; Ursini, Francesco ; Yang, Yi-Jung ; Zane, Silvia ; Zhang, Wenda ; Agudo, Iván ; Antonelli, Lucio A. ; Baldini, Luca ; Baumgartner, Wayne H. ; Bellazzini, Ronaldo ; Bongiorno, Stephen D. ; Bonino, Raffaella ; Brez, Alessandro ; Bucciantini, Niccolò ; Castellano, Simone ; Cavazzuti, Elisabetta ; Chen, Chien-Ting ; Ciprini, Stefano ; de Rosa, Alessandra ; del Monte, Ettore ; Di Gesu, Laura ; Di Lalla, Niccolò ; Di Marco, Alessandro ; Donnarumma, Immacolata ; Doroshenko, Victor ; Ehlert, Steven R. ; Enoto, Teruaki ; Evangelista, Yuri ; Fabiani, Sergio ; Ferrazzoli, Riccardo ; Gunji, Shuichi ; Hayashida, Kiyoshi ; Heyl, Jeremy ; Iwakiri, Wataru ; Jorstad, Svetlana G. ; Karas, Vladimir ; Kislat, Fabian ; Kitaguchi, Takao ; Kolodziejczak, Jeffery J. ; La Monaca, Fabio ; Latronico, Luca ; Liodakis, Ioannis ; Maldera, Simone ; Manfreda, Alberto ; Marin, Frédéric ; Marscher, Alan P. ; Marshall, Herman L. ; Massaro, Francesco ; Mitsuishi, Ikuyuki ; Mizuno, Tsunefumi ; Muleri, Fabio ; Ng, Chi-Yung ; O'Dell, Stephen L. ; Omodei, Nicola ; Oppedisano, Chiara ; Papitto, Alessandro ; Pavlov, George G. ; Peirson, Abel L. ; Perri, Matteo</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-hal_primary_oai_HAL_insu_04643548v13</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2024</creationdate><topic>Sciences of the Universe</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Ingram, 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(HAL)</collection><collection>Hyper Article en Ligne (HAL) (Open Access)</collection><jtitle>The Astrophysical journal</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Ingram, Adam</au><au>Bollemeijer, Niek</au><au>Veledina, Alexandra</au><au>Dovčiak, Michal</au><au>Poutanen, Juri</au><au>Egron, Elise</au><au>Russell, Thomas D.</au><au>Trushkin, Sergei A.</au><au>Negro, Michela</au><au>Ratheesh, Ajay</au><au>Capitanio, Fiamma</au><au>Connors, Riley</au><au>Neilsen, Joseph</au><au>Kraus, Alexander</au><au>Iacolina, Maria Noemi</au><au>Pellizzoni, Alberto</au><au>Pilia, Maura</au><au>Carotenuto, Francesco</au><au>Matt, Giorgio</au><au>Mastroserio, Guglielmo</au><au>Kaaret, Philip</au><au>Bianchi, Stefano</au><au>García, Javier A.</au><au>Bachetti, Matteo</au><au>Wu, Kinwah</au><au>Costa, Enrico</au><au>Ewing, Melissa</au><au>Kravtsov, Vadim</au><au>Krawczynski, Henric</au><au>Loktev, Vladislav</au><au>Marinucci, Andrea</au><au>Marra, Lorenzo</au><au>Mikušincová, Romana</au><au>Nathan, Edward</au><au>Parra, Maxime</au><au>Petrucci, Pierre-Olivier</au><au>Righini, Simona</au><au>Soffitta, Paolo</au><au>Steiner, James F.</au><au>Svoboda, Jiří</au><au>Tombesi, Francesco</au><au>Tugliani, Stefano</au><au>Ursini, Francesco</au><au>Yang, Yi-Jung</au><au>Zane, Silvia</au><au>Zhang, Wenda</au><au>Agudo, Iván</au><au>Antonelli, Lucio A.</au><au>Baldini, Luca</au><au>Baumgartner, Wayne H.</au><au>Bellazzini, Ronaldo</au><au>Bongiorno, Stephen D.</au><au>Bonino, Raffaella</au><au>Brez, Alessandro</au><au>Bucciantini, Niccolò</au><au>Castellano, Simone</au><au>Cavazzuti, Elisabetta</au><au>Chen, Chien-Ting</au><au>Ciprini, Stefano</au><au>de Rosa, Alessandra</au><au>del Monte, Ettore</au><au>Di Gesu, Laura</au><au>Di Lalla, Niccolò</au><au>Di Marco, Alessandro</au><au>Donnarumma, Immacolata</au><au>Doroshenko, Victor</au><au>Ehlert, Steven R.</au><au>Enoto, Teruaki</au><au>Evangelista, Yuri</au><au>Fabiani, Sergio</au><au>Ferrazzoli, Riccardo</au><au>Gunji, Shuichi</au><au>Hayashida, Kiyoshi</au><au>Heyl, Jeremy</au><au>Iwakiri, Wataru</au><au>Jorstad, Svetlana G.</au><au>Karas, Vladimir</au><au>Kislat, Fabian</au><au>Kitaguchi, Takao</au><au>Kolodziejczak, Jeffery J.</au><au>La Monaca, Fabio</au><au>Latronico, Luca</au><au>Liodakis, Ioannis</au><au>Maldera, Simone</au><au>Manfreda, Alberto</au><au>Marin, Frédéric</au><au>Marscher, Alan P.</au><au>Marshall, Herman L.</au><au>Massaro, Francesco</au><au>Mitsuishi, Ikuyuki</au><au>Mizuno, Tsunefumi</au><au>Muleri, Fabio</au><au>Ng, Chi-Yung</au><au>O'Dell, Stephen L.</au><au>Omodei, Nicola</au><au>Oppedisano, Chiara</au><au>Papitto, Alessandro</au><au>Pavlov, George G.</au><au>Peirson, Abel L.</au><au>Perri, Matteo</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Tracking the X-Ray Polarization of the Black Hole Transient Swift J1727.8–1613 during a State Transition</atitle><jtitle>The Astrophysical journal</jtitle><date>2024</date><risdate>2024</risdate><volume>968</volume><issn>0004-637X</issn><eissn>1538-4357</eissn><abstract>We report on an observational campaign on the bright black hole (BH) X-ray binary Swift J1727.8–1613 centered around five observations by the Imaging X-ray Polarimetry Explorer. These observations track for the first time the evolution of the X-ray polarization of a BH X-ray binary across a hard to soft state transition. The 2–8 keV polarization degree decreased from ∼4% to ∼3% across the five observations, but the polarization angle remained oriented in the north–south direction throughout. Based on observations with the Australia Telescope Compact Array, we find that the intrinsic 7.25 GHz radio polarization aligns with the X-ray polarization. Assuming the radio polarization aligns with the jet direction (which can be tested in the future with higher-spatial-resolution images of the jet), our results imply that the X-ray corona is extended in the disk plane, rather than along the jet axis, for the entire hard intermediate state. This in turn implies that the long (≳10 ms) soft lags that we measure with the Neutron star Interior Composition ExploreR are dominated by processes other than pure light-crossing delays. Moreover, we find that the evolution of the soft lag amplitude with spectral state does not follow the trend seen for other sources, implying that Swift J1727.8–1613 is a member of a hitherto undersampled subpopulation.</abstract><pub>American Astronomical Society</pub><doi>10.3847/1538-4357/ad3faf</doi><oa>free_for_read</oa></addata></record> |
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language | eng |
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subjects | Sciences of the Universe |
title | Tracking the X-Ray Polarization of the Black Hole Transient Swift J1727.8–1613 during a State Transition |
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