English
Related papers

Related papers: The non-thermal emission from the colliding-wind b…

200 papers

Several gamma-ray binaries show extended X-ray emission that may be associated to interactions of an outflow with the medium. Some of these systems are, or may be, high-mass binaries harboring young nonaccreting pulsars, in which the…

High Energy Astrophysical Phenomena · Physics 2015-05-28 V. Bosch-Ramon , M. V. Barkov

Colliding winds of massive binaries have long been considered as potential sites of non-thermal high-energy photon production. This is motivated by the detection of non-thermal spectra in the radio band, as well as by correlation studies of…

Astrophysics · Physics 2008-11-26 Anita Reimer , Olaf Reimer , Martin Pohl

Binary systems that harbor a non-accreting pulsar are efficient non-thermal emitters, from radio to gamma rays. This broadband emission is thought to come from the region where the companion star and pulsar winds collide. A paradigmatic…

High Energy Astrophysical Phenomena · Physics 2015-03-19 V. Bosch-Ramon

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

We study the non-thermal emission from the interaction between magnetized Jupiter-like exoplanets and the wind from their host star. The supersonic motion of planets through the wind forms a bow shock that accelerates electrons which…

Earth and Planetary Astrophysics · Physics 2019-04-10 Xiawei Wang , Abraham Loeb

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

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

Non-thermal emission has been detected in WR-stars for many years at long wavelengths spectral range, in general attributed to synchrotron emission. Two key ingredients are needed to explain such emissions, namely magnetic fields and…

High Energy Astrophysical Phenomena · Physics 2015-10-22 D. Falceta-Goncalves

Some colliding-wind massive binaries, called particle-accelerating colliding-wind binaries (PACWB), exhibit synchrotron radio emission, which is assumed to be generated by a stellar magnetic field. However, no measurement of magnetic fields…

Solar and Stellar Astrophysics · Physics 2015-02-25 C. Neiner , J. Grunhut , B. Leroy , M. De Becker , G. Rauw

Gamma-ray loud X-ray binaries are binary systems that show non-thermal broadband emission from radio to gamma rays. If the system comprises a massive star and a young non-accreting pulsar, their winds will collide producing broadband…

High Energy Astrophysical Phenomena · Physics 2011-11-23 V. Zabalza , V. Bosch-Ramon , J. M. Paredes

In addition to gamma-ray binaries which contain a compact object, high-energy and very high-energy gamma rays have also been detected from colliding-wind binaries. The collision of the winds produces two strong shock fronts, one for each…

High Energy Astrophysical Phenomena · Physics 2021-05-21 Grzegorz Kowal , Diego A. Falceta-Gonçalves

High-mass binary systems involve extreme environments that produce non-thermal emission from radio to gamma rays. Only three types of these systems are known to emit persistent gamma-ray emission: colliding-wind binaries, high-mass X-ray…

High Energy Astrophysical Phenomena · Physics 2016-03-31 B. Marcote

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

The mass-loss rates from single massive stars are high enough to form radio photospheres at large distances from the stellar surface where the wind is optically thick to (thermal) free-free opacity. Here we calculate the far-infrared,…

Solar and Stellar Astrophysics · Physics 2022-06-15 Christiana Erba , Richard Ignace

Massive hot stars produce dense ultraviolet (UV) photon fields in their surroundings. If a very high-energy (VHE) gamma-ray emitter is located close to the star, then gamma-rays are absorbed in the stellar photon field, creating secondary…

Astrophysics · Physics 2009-11-13 V. Bosch-Ramon , D. Khangulyan , F. A. Aharonian

Context. Gamma-ray binaries are systems that radiate the dominant part of their non-thermal emission in the gamma-ray band. In a wind-driven scenario, these binaries are thought to consist of a pulsar orbiting a massive star, accelerating…

High Energy Astrophysical Phenomena · Physics 2021-03-02 David Huber , Ralf Kissmann , Anita Reimer , Olaf Reimer

Massive stars play an important role in explaining the cosmic ray spectrum below the knee, possibly even up to the ankle, i.e. up to energies of 1e15 eV or 1e18.5 eV, respectively. In particular, Supernova Remnants are discussed as one of…

High Energy Astrophysical Phenomena · Physics 2014-05-05 J. Becker Tjus

In the colliding wind region of early-type binaries, electrons can be accelerated up to relativistic energies displaying power-law spectra, as demonstrated by the detection of non-thermal radio emission from several WR+OB systems. The…

Astrophysics · Physics 2009-11-07 P. Benaglia , G. E. Romero

Binary systems that host a massive star and a non-accreting pulsar can be powerful non-thermal emitters. The relativistic pulsar wind and the non-relativistic stellar outflows interact along the orbit, producing ultrarelativistic particles…

High Energy Astrophysical Phenomena · Physics 2022-04-18 Maxim V. Barkov , Valenti Bosch-Ramon

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