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Related papers: Radio emission from WR140

200 papers

WR 25 is a colliding-wind binary star system comprised of a very massive O2.5If*/WN6 primary and an O-star secondary in a 208-day period eccentric orbit. These hot stars have strong, highly-supersonic winds which interact to form a bright…

High Energy Astrophysical Phenomena · Physics 2021-03-10 Pragati Pradhan , David P. Huenemoerder , Richard Ignace , A. M. T Pollock , Joy S. Nichols

We present new spectra of WR 140 (HD 193793) in the JHK bands with some covering the 1.083-micron He I emission line at higher resolution, observed between 2000 October and 2003 May to cover its 2001 periastron passage. The WC7 + O4-5…

Astrophysics · Physics 2009-11-10 W. P. Varricatt , P. M. Williams , N. M. Ashok

We modelled the Chandra and RXTE X-ray spectra of the massive binary WR 140 in the framework of the standard colliding stellar wind (CSW) picture. Models with partial electron heating at the shock fronts are a better representation of the…

High Energy Astrophysical Phenomena · Physics 2020-12-02 Svetozar A. Zhekov

We present calculations of the spatial and spectral distribution of the radio emission from a wide WR+OB colliding-wind binary system based on high-resolution hydrodynamical simulations and solutions to the radiative transfer equation. We…

Astrophysics · Physics 2009-11-10 S. M. Dougherty , J. M. Pittard , L. Kasian , R. F. Coker , P. M. Williams , H. M. Lloyd

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

We analyze new high-resolution Chandra X-ray images of the Wolf-Rayet binary system WR147. This system contains a WN8 star with an early-type companion located 0.6'' to its north, and is the only known early-type binary with a separation on…

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

Radio observations are an effective tool to discover particle acceleration regions in colliding-wind binaries, through detection of synchrotron radiation; these regions are natural laboratories for the study of relativistic particles.…

Solar and Stellar Astrophysics · Physics 2015-07-15 Paula Benaglia , Benito Marcote , Javier Moldon , Ed Nelan , Michael De Becker , Sean M. Dougherty , Baerbel Koribalski

We present multi--epoch VLBA observations of the compact wind collision region in the Cyg OB2 #5 system. These observation confirm the arc-shaped morphology of the emission reported earlier. The total flux as a function of time is roughly…

Solar and Stellar Astrophysics · Physics 2015-06-12 Sergio A. Dzib , Luis F. Rodriguez , Laurent Loinard , Amy J. Mioduszewski , Gisela N. Ortiz-Leon , Anabella T. Araudo

Several tens of massive binary systems display indirect, or even strong evidence for non-thermal radio emission, hence their particle accelerator status. These objects are referred to as particle-accelerating colliding-wind binaries…

Solar and Stellar Astrophysics · Physics 2019-04-02 M. De Becker , N. L. Isequilla , 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

We present spatially resolved spectra of the visual WR+OB massive binaries WR86, WR146, and WR147, obtained with the Space Telescope Imaging Spectrograph on board the Hubble Space Telescope. The systems are classified as follows: WR86 = WC7…

We present new radio and optical observations of the colliding-wind system WR146 aimed at understanding the nature of the companion to the Wolf-Rayet star and the collision of their winds. The radio observations reveal emission from three…

Astrophysics · Physics 2009-10-31 Sean M. Dougherty , P. M. Williams , D. L. Pollacco

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…

Classical Wolf-Rayet stars are descendants of massive OB-type stars that have lost their hydrogen-rich envelopes, and are in the final stages of stellar evolution, possibly exploding as type Ib/c supernovae. It is understood that the…

WR21 and WR31 are two WR+O binaries with short periods, quite similar to the case of V444 Cyg. The XMM-Newton observatory has monitored these two objects and clearly revealed phase-locked variations as expected from colliding winds. The…

Solar and Stellar Astrophysics · Physics 2023-09-13 Yael Naze , Gregor Rauw , Rachel Johnson , Eric Gosset , Jennifer L. Hoffman

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 colliding wind binary (CWB) systems \eta\ Carinae and WR140 provide unique laboratories for X-ray astrophysics. Their wind-wind collisions produce hard X-rays that have been monitored extensively by several X-ray telescopes, including…

Solar and Stellar Astrophysics · Physics 2015-06-03 Christopher M. P. Russell , Stanley P. Owocki , Michael F. Corcoran , Atsuo T. Okazaki , Thomas I. Madura

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