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Related papers: A radio-map of the colliding winds in the very mas…

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The binary stellar system HD 93129A is one of the most massive known binaries in our Galaxy. This system presents non-thermal emission in the radio band, which can be used to infer its physical conditions and predict its emission in the…

High Energy Astrophysical Phenomena · Physics 2016-07-06 Santiago del Palacio , Valentí Bosch-Ramon , Gustavo E. Romero , Paula Benaglia

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

We conducted an observational campaign towards one of the most massive and luminous colliding wind binaries in the Galaxy, HD~93129A, close to its periastron passage in 2018. During this time the source was predicted to be in its maximum of…

In this work the thermal emission over cm to sub-mm wavelengths from the winds in short-period O+O-star binaries is investigated (potential non-thermal emission is presently ignored). The calculations are based on three-dimensional…

Solar and Stellar Astrophysics · Physics 2015-05-13 J. M. Pittard

HD93129A is an O+O stellar system whose CWR has been mapped by high angular resolution observations at cm wavelengths. The synchrotron nature of the radio emission confirms its particle accelerator status. According to astrometric…

Solar and Stellar Astrophysics · Physics 2025-05-28 Paula Benaglia , Santiago del Palacio , Juliana Saponara , Agustina B. Blanco , Michael De Becker , Benito Marcote

This brief review describes radio observations of colliding winds in massive stars starting with the first direct observational support for the colliding-wind model advanced in the early 1990's to explain non-thermal radio and thermal X-ray…

Astrophysics of Galaxies · Physics 2009-08-20 Sean M. Dougherty

WR146 is a WC6+O8 colliding-wind binary (CWB) system with thermal emission from the stellar winds of the two stars, and bright non-thermal emission from the wind-collision region (WCR) where the winds collide. We present high resolution…

Astrophysics · Physics 2007-05-23 E. P. O'Connor , S. M. Dougherty , J. M. Pittard , P. M. Williams

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…

Binary systems formed by early-type stars with strong winds are known to display variable non-thermal radio emission, thermal X-rays, and, at least in one case (Eta Carina), $\gamma$ rays. Some of these systems are quite eccentric and the…

High Energy Astrophysical Phenomena · Physics 2019-03-07 Gustavo E. Romero

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

The colliding-wind region in binary systems made of massive stars allows us to investigate various aspects of shock physics, including particle acceleration. Particle accelerators of this kind are tagged as Particle-Accelerating…

Solar and Stellar Astrophysics · Physics 2024-01-08 M. De Becker , B. Marcote , T. Furst , P. Benaglia

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

Colliding winds in massive binaries generate X-ray-bright shocks, synchrotron radio emission, and sometimes even dusty "pinwheel" spirals. We report the first X-ray detections of the dusty WC+O binary system WR 112 from Chandra and Swift,…

Massive, early type stars have been detected as radio sources for many decades. Their thermal winds radiate free-free continuum and in binary systems hosting a colliding-wind region, non-thermal emission has also been detected. To date, the…

Solar and Stellar Astrophysics · Physics 2020-07-22 Paula Benaglia , Michäel De Becker , C. H. Ishwara-Chandra , Huib Intema , Natacha L. Isequilla

Massive stars in binary systems (as WR140, WR147 or $\eta$ Carinae) have long been regarded as potential sources of high-energy $\gamma$-rays. The emission is thought to arise in the region where the stellar winds collide and produce…

High Energy Astrophysical Phenomena · Physics 2014-02-05 K. Reitberger , R. Kissmann , A. Reimer , G. Dubus , O. Reimer

We have developed radiative transfer models of the radio emission from colliding-wind binaries (CWB) based on a hydrodynamical treatment of the wind-collision region (WCR). The archetype of CWB systems is the 7.9-yr period binary WR140,…

Astrophysics · Physics 2007-05-23 S. M. Dougherty , J. M. Pittard , E. P. O'Connor

In the colliding-wind region of massive binaries, non-thermal radio emission occurs. This non-thermal radio emission (due to synchrotron radiation) has so far been observed at centimetre wavelengths. At millimetre wavelengths, the stellar…

Solar and Stellar Astrophysics · Physics 2017-12-13 R. Blomme , D. M. Fenech , R. K. Prinja , J. M. Pittard , J. C. Morford

The recently discovered colliding-wind binary (CWB) Apep has been shown to emit luminously from radio to X-rays, with the emission driven by a binary composed of two Wolf-Rayet (WR) stars of one carbon-sequence (WC8) and one…

Solar and Stellar Astrophysics · Physics 2020-12-23 B. Marcote , J. R. Callingham , M. De Becker , P. G. Edwards , Y. Han , R. Schulz , J. Stevens , P. G. Tuthill

The colliding winds in a massive binary system generate synchrotron emission due to a fraction of electrons that have been accelerated to relativistic speeds around the shocks in the colliding-wind region. We studied the radio light curve…

Solar and Stellar Astrophysics · Physics 2015-06-17 R. Blomme , D. Volpi

Aims: Non-thermal radio emission associated with massive stars is believed to arise from a wind-wind collision in a binary system. However, the evidence of binarity is still lacking in some cases, notably Cyg OB2 #9 Methods: For several…

Astrophysics · Physics 2012-09-26 Y. Naze , M. De Becker , G. Rauw , C. Barbieri
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