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Related papers: Two Wolf-Rayet stars at the heart of colliding-win…

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The recent discovery of a spectacular dust plume in the system 2XMM J160050.7-514245 (referred to as "Apep") suggested a physical origin in a colliding-wind binary by way of the "Pinwheel" mechanism. Observational data pointed to a…

Solar and Stellar Astrophysics · Physics 2020-10-13 Y. Han , P. G. Tuthill , R. M. Lau , A. Soulain , J. R. Callingham , P. M. Williams , P. A. Crowther , B. J. S. Pope , B. Marcote

The massive evolved Wolf-Rayet stars sometimes occur in colliding-wind binary systems in which dust plumes are formed as a result of the collision of stellar winds. These structures are known to encode the parameters of the binary orbit and…

Solar and Stellar Astrophysics · Physics 2018-11-20 J. R. Callingham , P. G. Tuthill , B. J. S. Pope , P. M. Williams , P. A. Crowther , M. Edwards , B. Norris , L. Kedziora-Chudczer

Carbon-rich Wolf-Rayet (WR) stars are significant contributors of carbonaceous dust to the galactic environment, however the mechanisms and conditions for formation and subsequent evolution of dust around these stars remain open questions.…

Solar and Stellar Astrophysics · Physics 2025-11-19 Yinuo Han , Ryan M. T. White , Joseph R. Callingham , Ryan M. Lau , Benjamin J. S. Pope , Noel D. Richardson , Peter G. Tuthill

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

Much of the carbonaceous dust observed in the early universe may originate from colliding wind binaries (CWBs) hosting hot, luminous Wolf-Rayet (WR) stars. Downstream of the shock between the stellar winds there exists a suitable…

Wolf-Rayet stars embody the final stable phase of the most massive stars immediately before their evolution is terminated in a supernova explosion. They are responsible for some of the most extreme and energetic phenomena in stellar…

Solar and Stellar Astrophysics · Physics 2024-12-18 Ryan M. T. White , Peter Tuthill

We have spectroscopically discovered a pair of twin, nitrogen-type, hydrogen-rich, Wolf-Rayet stars (WN8-9h) that are both surrounded by circular, mid-infrared-bright nebulae detected with the Spitzer Space Telescope and MIPS instrument.…

Solar and Stellar Astrophysics · Physics 2015-05-19 Jon Mauerhan , Stefanie Wachter , Pat Morris , Schuyler Van Dyk , D. W. Hoard

Apep is the brightest and most luminous non-thermal colliding-wind binary by over an order of magnitude. It has been suggested from infrared observations that one of the Wolf-Rayet stars in Apep is launching an anisotropic wind. Here we…

Solar and Stellar Astrophysics · Physics 2021-10-27 S. Bloot , J. R. Callingham , B. Marcote

This paper discusses our ongoing efforts to characterize dust-enshrouded Wolf-Rayet (WR) stars in the radio and infrared. We have used the Very Large Array to measure the broadband radio spectrum of WR stars in suspected binary systems and…

Astrophysics · Physics 2007-05-23 J. D. Monnier , L. J. Greenhill , P. G. Tuthill , W. C. Danchi

When two massive stars orbit each other, their winds create a shock cone. In some cases, an evolved, carbon-rich Wolf-Rayet (WR) star's wind collides with that of an orbiting OB star, condensing into dust downstream. This dust is then seen…

One of the main properties of Wolf-Rayet (WR) stars is a very intense outflow of gas. No less than 40\% \ of WR stars belong to binary systems. Young massive O and B stars are the secondary components of such systems. OB stars also have an…

Astrophysics · Physics 2007-05-23 Vladimir V. Usov

Classical Wolf-Rayet stars are the descendants of massive OB stars that have lost their hydrogen envelopes and are burning helium in their cores prior to exploding as type Ib/c supernovae. The mechanisms for losing their hydrogen envelopes…

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

Some hot, massive, population-I Wolf-Rayet (WR) stars of the carbon subclass are known to be prolific dust-producers. How dust can form in such a hostile environment remains a mystery. Here we report the discovery of a relatively cool,…

Astrophysics · Physics 2009-11-07 S. V. Marchenko , A. F. J. Moffat , W. D. Vacca , S. Cote , R. Doyon

Wolf-Rayet stars represent one of the final stages of massive stellar evolution. Relatively little is known about this short-lived phase and we currently lack reliable mass, distance, and binarity determinations for a representative sample.…

Wolf-Rayet (WR) stars are helium-burning, evolved massive stars which have had most of their hydrogen-rich outer layers removed either through stellar winds and/or binary stripping. Here we report on LMC173-1, a WN3+O binary located in the…

Several long-period binaries with a carbon-rich Wolf-Rayet star and an O star produce dust in their wind collisions. In eccentric binaries, this is seen most strongly near periastron passage. The exact conditions leading to dust creation…

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

We construct a speculative scenario for the evolution of Wolf-Rayet central stars of planetary nebula. It is clear from the latest infra-red observations that a new perspective has to be adopted: the simultaneous presence of carbon- and…

Astrophysics · Physics 2009-11-07 Orsola De Marco , Noam Soker

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
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