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X-ray Polarization of the Black Hole X-ray Binary 4U 1630-47 Challenges Standard Thin Accretion Disk Scenario

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arxiv 2304.12752 v2 pith:5OCPNMGV submitted 2023-04-25 astro-ph.HE

Ajay Ratheesh , Michal Dovčiak , Henric Krawczynski , Jakub Podgorný , Lorenzo Marra , Alexandra Veledina , Valery Suleimanov , Nicole Rodriguez Cavero
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James Steiner Jiri Svoboda Andrea Marinucci Stefano Bianchi Michela Negro Giorgio Matt Francesco Tombesi Juri Poutanen Adam Ingram Roberto Taverna Andrew West Vladimir Karas Francesco Ursini Paolo Soffitta Fiamma Capitanio Domenico Viscolo Alberto Manfreda Fabio Muleri Maxime Parra Banafsheh Beheshtipour Sohee Chun Niccolò Cibrario Niccolò Di Lalla Sergio Fabiani Kun Hu Philip Kaaret Vladislav Loktev Romana Mikušincová Tsunefumi Mizuno Nicola Omodei Pierre-Olivier Petrucci Simonetta Puccetti John Rankin Silvia Zane Sixuan Zhang Iván Agudo Lucio Antonelli Matteo Bachetti Luca Baldini Wayne Baumgartner Ronaldo Bellazzini Stephen Bongiorno Raffaella Bonino Alessandro Brez Niccolò Bucciantini Simone Castellano Elisabetta Cavazzuti Chien-Ting Chen Stefano Ciprini Enrico Costa Alessandra De Rosa Ettore Del Monte Laura Di Gesu Alessandro Di Marco Immacolata Donnarumma Victor Doroshenko Steven Ehlert Teruaki Enoto Yuri Evangelista Riccardo Ferrazzoli Javier Garcia Shuichi Gunji Kiyoshi Hayashida Jeremy Heyl Wataru Iwakiri Svetlana Jorstad Fabian Kislat Takao Kitaguchi Jeffery Kolodziejczak Fabio La Monaca Luca Latronico Ioannis Liodakis Simone Maldera Frédéric Marin Alan Marscher Herman Marshall Francesco Massaro Ikuyuki Mitsuishi C.-Y. Ng Stephen O'Dell Chiara Oppedisano Alessandro Papitto George Pavlov Abel Peirson Matteo Perri Melissa Pesce-Rollins Maura Pilia Andrea Possenti Brian Ramsey Oliver Roberts Roger Romani Carmelo Sgrò Patrick Slane Gloria Spandre Douglas Swartz Toru Tamagawa Fabrizio Tavecchio Yuzuru Tawara Allyn Tennant Nicholas Thomas Alessio Trois Sergey Tsygankov Roberto Turolla Jacco Vink Martin Weisskopf Kinwah Wu Fei Xie
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keywords x-raypolarizationblackholethinaccretionbinaryixpe
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abstract

Large energy-dependent X-ray polarization degree is detected by the Imaging X-ray Polarimetry Explorer ({IXPE}) in the high-soft emission state of the black hole X-ray binary 4U 1630--47. The highly significant detection (at $\approx50\sigma$ confidence level) of an unexpectedly high polarization, rising from $\sim6\%$ at $2$ keV to $\sim10\%$ at $8$ keV, cannot be easily reconciled with standard models of thin accretion discs. In this work we compare the predictions of different theoretical models with the {IXPE} data and conclude that the observed polarization properties are compatible with a scenario in which matter accretes onto the black hole through a thin disc, covered by a partially-ionized atmosphere flowing away at mildly relativistic velocities.

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  1. Astronomical X-ray Polarimetry as a diagnostic for questions of fundamental Physics. What we learned from the Imaging X-Ray Polarimetry Explorer (IXPE)

    astro-ph.IM 2024-12 unverdicted

    A conference review of IXPE's first three years concludes that X-ray polarimetry is a promising new diagnostic for fundamental physics, with the most promising target being axion-like particle induced polarization in ...

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