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Context. Particle-accelerating colliding-wind binaries (PACWBs) are systems that are formed by two massive and hot stars and produce nonthermal (NT) radiation. The key elements of these systems are fast winds and the shocks that they create…

High Energy Astrophysical Phenomena · Physics 2023-03-01 L. Abaroa , G. E. Romero , P. Sotomayor

Context: Massive colliding-wind binaries (CWBs) can be non-thermal sources. The emission produced in their wind-collision region (WCR) encodes information of both the shocks properties and the relativistic electrons accelerated in them. The…

High Energy Astrophysical Phenomena · Physics 2023-04-12 S. del Palacio , F. García , M. De Becker , D. Altamirano , V. Bosch-Ramon , P. Benaglia , B. Marcote , G. E. Romero

An increasing number of early-type (O and Wolf-Rayet) colliding wind binaries (CWBs) is known to accelerate particles up to relativistic energies. In this context, non-thermal emission processes such as inverse Compton (IC) scattering are…

Astrophysics · Physics 2007-09-10 M. De Becker , G. Rauw , J. M. Pittard , R. Blomme , G. E. Romero , H. Sana , I. R. Stevens

High-resolution radio observations have revealed that non-thermal radio emission in WR stars arises where the stellar wind of the WR star collides with that of a binary companion. These colliding-wind binary (CWB) systems offer an important…

Astrophysics · Physics 2007-05-23 Sean M. Dougherty , Julian M. Pittard

Accretion discs in strong gravity ubiquitously produce winds, seen as blueshifted absorption lines in the X-ray band of both stellar mass X-ray binaries (black holes and neutron stars), and supermassive black holes. Some of the most…

High Energy Astrophysical Phenomena · Physics 2025-09-19 XRISM collaboration , Marc Audard , Hisamitsu Awaki , Ralf Ballhausen , Aya Bamba , Ehud Behar , Rozenn Boissay-Malaquin , Laura Brenneman , Gregory V. Brown , Lia Corrales , Elisa Costantini , Renata Cumbee , Maria Diaz Trigo , Chris Done , Tadayasu Dotani , Ken Ebisawa , Megan Eckart , Dominique Eckert , Teruaki Enoto , Satoshi Eguchi , Yuichiro Ezoe , Adam Foster , Ryuichi Fujimoto , Yutaka Fujita , Yasushi Fukazawa , Kotaro Fukushima , Akihiro Furuzawa , Luigi Gallo , Javier A. Garcia , Liyi Gu , Matteo Guainazzi , Kouichi Hagino , Kenji Hamaguchi , Isamu Hatsukade , Katsuhiro Hayashi , Takayuki Hayashi , Natalie Hell , Edmund Hodges-Kluck , Ann Hornschemeier , Yuto Ichinohe , Manabu Ishida , Kumi Ishikawa , Yoshitaka Ishisaki , Jelle Kaastra , Timothy Kallman , Erin Kara , Satoru Katsuda , Yoshiaki Kanemaru , Richard Kelley , Caroline Kilbourne , Shunji Kitamoto , Shogo Kobayashi , Takayoshi Kohmura , Aya Kubota , Maurice Leutenegger , Michael Loewenstein , Yoshitomo Maeda , Maxim Markevitch , Hironori Matsumoto , Kyoko Matsushita , Dan McCammon , Brian McNamara , Francois Mernier , Eric D. Miller , Jon M. Miller , Ikuyuki Mitsuishi , Misaki Mizumoto , Tsunefumi Mizuno , Koji Mori , Koji Mukai , Hiroshi Murakami , Richard Mushotzky , Hiroshi Nakajima , Kazuhiro Nakazawa , Jan-Uwe Ness , Kumiko Nobukawa , Masayoshi Nobukawa , Hirofumi Noda , Hirokazu Odaka , Shoji Ogawa , Anna Ogorzalek , Takashi Okajima , Naomi Ota , Stephane Paltani , Robert Petre , Paul Plucinsky , Frederick Scott Porter , Katja Pottschmidt , Kosuke Sato , Toshiki Sato , Makoto Sawada , Hiromi Seta , Megumi Shidatsu , Aurora Simionescu , Randall Smith , Hiromasa Suzuki , Andrew Szymkowiak , Hiromitsu Takahashi , Mai Takeo , Toru Tamagawa , Keisuke Tamura , Takaaki Tanaka , Atsushi Tanimoto , Makoto Tashiro , Yukikatsu Terada , Yuichi Terashima , Yohko Tsuboi , Masahiro Tsujimoto , Hiroshi Tsunemi , Takeshi G. Tsuru , Aysegul Tumer , Hiroyuki Uchida , Nagomi Uchida , Yuusuke Uchida , Hideki Uchiyama , Yoshihiro Ueda , Shinichiro Uno , Jacco Vink , Shin Watanabe , Brian J. Williams , Satoshi Yamada , Shinya Yamada , Hiroya Yamaguchi , Kazutaka Yamaoka , Noriko Yamasaki , Makoto Yamauchi , Shigeo Yamauchi , Tahir Yaqoob , Tomokage Yoneyama , Tessei Yoshida , Mihoko Yukita , Irina Zhuravleva , Joey Neilsen , Ryota Tomaru , Missagh Mehdipour

We investigate accretion disk winds commonly observed in galactic black hole (BH) X-ray binaries (XRB), which manifest as blueshifted absorption features in X-ray spectra. We model these winds as ideal magnetohydrodynamic outflows of hot…

High Energy Astrophysical Phenomena · Physics 2025-10-30 Atsushi Tanimoto , Keigo Fukumura , Shoji Ogawa , Hirokazu Odaka , Francesco Tombesi , Marco Laurenti , Pierpaolo Condo , Alfredo Luminari

WR+O star binary systems exhibit synchrotron emission arising from relativistic electrons accelerated where the wind of the WR star and that of its massive binary companion collide - the wind-collision region (WCR). These ``colliding-wind''…

Astrophysics · Physics 2007-05-23 S. M. Dougherty , J. M. Pittard

Particle-accelerating colliding-wind binaries (PACWBs) are multiple systems made of early-type stars able to accelerate particles up to relativistic velocities. The relativistic particles can interact with different fields (magnetic or…

High Energy Astrophysical Phenomena · Physics 2017-04-05 M. De Becker , P. Benaglia , G. E. Romero , C. S. Peri

Supergiant High Mass X-ray Binary systems (sgHMXBs) consist of a massive, late type, star and a neutron star. The massive stars exhibits strong, radiatively driven, stellar winds. Wind accretion onto compact object triggers X-ray emission,…

High Energy Astrophysical Phenomena · Physics 2015-06-17 A. Manousakis , R. Walter , J. Blondin

Optical emission from actively accreting X-ray binaries is dominated by X-ray reprocessing on the outer disk. In the regime of supercritical accretion, strong radiation will power a massive wind that is optically thick and nearly spherical,…

High Energy Astrophysical Phenomena · Physics 2019-10-09 Yuhan Yao , Hua Feng

X-ray binaries, as bright local sources with short variability timescales for a wide range of accretion processes, represent ideal targets for high-resolution X-ray spectroscopy. In this chapter, we present a high-resolution X-ray spectral…

High Energy Astrophysical Phenomena · Physics 2023-04-13 Joey Neilsen , Nathalie Degenaar

The O-type long-period binary HD 168112 and triple HD 167971 star systems have been known for several decades for their non-thermal synchrotron radio emission. This emission arises from relativistic electrons accelerated in the hydrodynamic…

Solar and Stellar Astrophysics · Physics 2024-10-21 Gregor Rauw , Ronny Blomme , Yaël Nazé , Delia Volpi

Context. Colliding winds in massive binaries are able to accelerate particles up to relativistic speeds as the result of the interaction between the winds of the different stellar components. HD 167971 exhibits this phenomenology which…

When the matter from a companion star is accreted towards the central compact accretor, i.e. a black hole (BH) or a neutron star (NS), an accretion disc and a jet outflow will form, providing bight X-ray and radio emission, which is known…

High Energy Astrophysical Phenomena · Physics 2023-03-21 Pei-Xin Shen , Wei-Min Gu

Colliding-wind binaries (CWBs) constitute an emerging class of $\gamma$-ray sources powered by strong, dense winds in massive stellar systems. The most powerful of them are those binaries hosting a Wolf-Rayet (WR) star. Following the recent…

High Energy Astrophysical Phenomena · Physics 2023-02-01 G. Martí-Devesa , O. Reimer , A. Reimer

Radio emission models of colliding wind binaries (CWBs) have been discussed by Dougherty et al. (2003). We extend these models by considering the temporal and spatial evolution of the energy distribution of relativistic electrons as they…

Astrophysics · Physics 2009-11-11 J. M. Pittard , S. M. Dougherty , R. F. Coker , E. O'Connor , N. J. Bolingbroke

The dynamics of colliding wind binary systems and conditions for efficient particle acceleration therein have attracted multiple numerical studies in the recent years. These numerical models seek an explanation of the thermal and…

Solar and Stellar Astrophysics · Physics 2016-11-09 R. Kissmann , K. Reitberger , O. Reimer , A. Reimer , E. Grimaldo

The recently discovered massive binary system Apep is the most powerful synchrotron emitter among the known Galactic colliding-wind binaries. This makes this particular system of great interest to investigate stellar winds and the…

High Energy Astrophysical Phenomena · Physics 2023-06-22 S. del Palacio , P. Benaglia , M. De Becker , V. Bosch-Ramon , G. E. Romero

Massive WR+O star systems produce high-temperature, shock-heated plasma where the wind of the WR star and that of its binary companion collide - the wind-collision region (WCR). The WCR is a source of thermal (e.g. hard X-rays) and…

Astrophysics · Physics 2007-05-23 J. M. Pittard , S. M. Dougherty

The collision of the hypersonic winds in early-type binaries produces shock heated gas, which radiates thermal X-ray emission, and relativistic electrons, which emit nonthermal radio emission. We review our current understanding of the…

Astrophysics · Physics 2007-05-23 J. M. Pittard , S. M. Dougherty , R. F. Coker , M. F. Corcoran
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