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Studying geometry of the ultraluminous X-ray pulsar Swift J0243.6+6124 using X-ray and optical polarimetry

Poutanen, Juri; Tsygankov, Sergey S.; Doroshenko, Victor; Forsblom, Sofia V.; Jenke, Peter; Kaaret, Philip; Berdyugin, Andrei V.; Blinov, Dmitry; Kravtsov, Vadim; Liodakis, Ioannis; Tzouvanou, Anastasia; Di Marco, Alessandro; Heyl, Jeremy; La Monaca, Fabio; Mushtukov, Alexander A.; Pavlov, George G.; Salganik, Alexander; Veledina, Alexandra; Weisskopf, Martin C.; Zane, Silvia; Loktev, Vladislav; Suleimanov, Valery F.; Wilson-Hodge, Colleen; Berdyugina, Svetlana V.; Kagitani, Masato; Piirola, Vilppu; Sakanoi, Takeshi; Agudo, Iván; Antonelli, Lucio A.; Bachetti, Matteo; Baldini, Luca; Baumgartner, Wayne H.; Bellazzini, Ronaldo; Bianchi, Stefano; Bongiorno, Stephen D.; Bonino, Raffaella; Brez, Alessandro; Bucciantini, Niccolò; Capitanio, Fiamma; Castellano, Simone; Cavazzuti, Elisabetta; Chen, Chien-Ting; Ciprini, Stefano; Costa, Enrico; De Rosa, Alessandra; Del Monte, Ettore; Di Gesu, Laura; Di Lalla, Niccolò; Donnarumma, Immacolata; Dovčiak, Michal; Ehlert, Steven R.; Enoto, Teruaki; Evangelista, Yuri; Fabiani, Sergio; Ferrazzoli, Riccardo; Garcia, Javier A.; Gunji, Shuichi; Hayashida, Kiyoshi; Iwakiri, Wataru; Jorstad, Svetlana G.; Karas, Vladimir; Kislat, Fabian; Kitaguchi, Takao; Kolodziejczak, Jeffery J.; Latronico, Luca; Maldera, Simone; Manfreda, Alberto; Marin, Frédéric; Marinucci, Andrea; Marscher, Alan P.; Marshall, Herman L.; Massaro, Francesco; Matt, Giorgio; Mitsuishi, Ikuyuki; Mizuno, Tsunefumi; Muleri, Fabio; Negro, Michela; Ng, Chi-Yung; O'Dell, Stephen L.; Omodei, Nicola; Oppedisano, Chiara; Papitto, Alessandro; Peirson, Abel L.; Perri, Matteo; Pesce-Rollins, Melissa; Petrucci, Pierre-Olivier; Pilia, Maura; Possenti, Andrea; Puccetti, Simonetta; Ramsey, Brian D.; Rankin, John; Ratheesh, Ajay; Roberts, Oliver J.; Romani, Roger W.; Sgrò, Carmelo; Slane, Patrick; Soffitta, Paolo; Spandre, Gloria; Swartz, Douglas A.; Tamagawa, Toru; Tavecchio, Fabrizio; Taverna, Roberto; Tawara, Yuzuru; Tennant, Allyn F.; Thomas, Nicholas E.; Tombesi, Francesco; Trois, Alessio; Turolla, Roberto; Vink, Jacco; Wu, Kinwah; Xie, Fei

Studying geometry of the ultraluminous X-ray pulsar Swift J0243.6+6124 using X-ray and optical polarimetry

Poutanen, Juri
Tsygankov, Sergey S.
Doroshenko, Victor
Forsblom, Sofia V.
Jenke, Peter
Kaaret, Philip
Berdyugin, Andrei V.
Blinov, Dmitry
Kravtsov, Vadim
Liodakis, Ioannis
Tzouvanou, Anastasia
Di Marco, Alessandro
Heyl, Jeremy
La Monaca, Fabio
Mushtukov, Alexander A.
Pavlov, George G.
Salganik, Alexander
Veledina, Alexandra
Weisskopf, Martin C.
Zane, Silvia
Loktev, Vladislav
Suleimanov, Valery F.
Wilson-Hodge, Colleen
Berdyugina, Svetlana V.
Kagitani, Masato
Piirola, Vilppu
Sakanoi, Takeshi
Agudo, Iván
Antonelli, Lucio A.
Bachetti, Matteo
Baldini, Luca
Baumgartner, Wayne H.
Bellazzini, Ronaldo
Bianchi, Stefano
Bongiorno, Stephen D.
Bonino, Raffaella
Brez, Alessandro
Bucciantini, Niccolò
Capitanio, Fiamma
Castellano, Simone
Cavazzuti, Elisabetta
Chen, Chien-Ting
Ciprini, Stefano
Costa, Enrico
De Rosa, Alessandra
Del Monte, Ettore
Di Gesu, Laura
Di Lalla, Niccolò
Donnarumma, Immacolata
Dovčiak, Michal
Ehlert, Steven R.
Enoto, Teruaki
Evangelista, Yuri
Fabiani, Sergio
Ferrazzoli, Riccardo
Garcia, Javier A.
Gunji, Shuichi
Hayashida, Kiyoshi
Iwakiri, Wataru
Jorstad, Svetlana G.
Karas, Vladimir
Kislat, Fabian
Kitaguchi, Takao
Kolodziejczak, Jeffery J.
Latronico, Luca
Maldera, Simone
Manfreda, Alberto
Marin, Frédéric
Marinucci, Andrea
Marscher, Alan P.
Marshall, Herman L.
Massaro, Francesco
Matt, Giorgio
Mitsuishi, Ikuyuki
Mizuno, Tsunefumi
Muleri, Fabio
Negro, Michela
Ng, Chi-Yung
O'Dell, Stephen L.
Omodei, Nicola
Oppedisano, Chiara
Papitto, Alessandro
Peirson, Abel L.
Perri, Matteo
Pesce-Rollins, Melissa
Petrucci, Pierre-Olivier
Pilia, Maura
Possenti, Andrea
Puccetti, Simonetta
Ramsey, Brian D.
Rankin, John
Ratheesh, Ajay
Roberts, Oliver J.
Romani, Roger W.
Sgrò, Carmelo
Slane, Patrick
Soffitta, Paolo
Spandre, Gloria
Swartz, Douglas A.
Tamagawa, Toru
Tavecchio, Fabrizio
Taverna, Roberto
Tawara, Yuzuru
Tennant, Allyn F.
Thomas, Nicholas E.
Tombesi, Francesco
Trois, Alessio
Turolla, Roberto
Vink, Jacco
Wu, Kinwah
Xie, Fei
Katso/Avaa
aa50696-24.pdf (8.298Mb)
Lataukset: 

EDP Sciences
doi:10.1051/0004-6361/202450696
URI
http://dx.doi.org/10.1051/0004-6361/202450696
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2025082791847
Tiivistelmä

Discovery of pulsations from a number of ultra-luminous X-ray (ULX) sources proved that accretion onto neutron stars can produce luminosities exceeding the Eddington limit by several orders of magnitude. The conditions necessary to achieve such high luminosities as well as the exact geometry of the accretion flow in the neutron star vicinity are, however, a matter of debate. The pulse phase-resolved polarization measurements that became possible with the launch of the Imaging X-ray Polarimetry Explorer (IXPE) can be used to determine the pulsar geometry and its orientation relative to the orbital plane. They provide an avenue to test different theoretical models of ULX pulsars. In this paper we present the results of three IXPE observations of the first Galactic ULX pulsar Swift J0243.6+6124 during its 2023 outburst. We find strong variations in the polarization characteristics with the pulsar phase. The average polarization degree increases from about 5% to 15% as the flux dropped by a factor of three in the course of the outburst. The polarization angle (PA) as a function of the pulsar phase shows two peaks in the first two observations, but changes to a characteristic sawtooth pattern in the remaining data set. This is not consistent with a simple rotating vector model. Assuming the existence of an additional constant polarized component, we were able to fit the three observations with a common rotating vector model and obtain constraints on the pulsar geometry. In particular, we find the pulsar angular momentum inclination with respect to the line of sight of ip = 15°–40°, the magnetic obliquity of θp = 60°–80°, and the pulsar spin position angle of χp ≈ −50°, which significantly differs from the constant component PA of about 10°. Combining these X-ray measurements with the optical PA, we find evidence for at least a 30° misalignment between the pulsar angular momentum and the binary orbital axis.

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