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Related papers: Modelling the radio emission from Cyg OB2 #5: a qu…

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Archival observations from the Very Large Array (VLA) at frequencies between 1.4 GHz and 43 GHz of the 6.6-day O6.5-7+O5.5-6 binary Cyg OB2 #5 over 20 years are re-examined. The aim is to determine the location and character of its known…

Solar and Stellar Astrophysics · Physics 2010-11-04 M. Kennedy , S. M. Dougherty , P. M. Williams , A. Fink

The star Cyg OB2 No. 9 is a well-known non-thermal radio emitter. Recent theoretical work suggests that all such O-stars should be in a binary or a multiple system. However, there is no spectroscopic evidence of a binary component.…

Astrophysics · Physics 2009-11-13 S. Van Loo , R. Blomme , S. M. Dougherty , M. C. Runacres

The radio emission from the well-studied massive stellar system Cyg OB2 #5 is known to fluctuate with a period of 6.7 years between a low-flux state when the emission is entirely of free-free origin, and a high-flux state when an additional…

Astrophysics of Galaxies · Physics 2015-05-28 Gisela Ortiz-Leon , Laurent Loinard , Luis F. Rodriguez , Amy J. Mioduszewski , Sergio A. Dzib

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

Cyg OB2 #9 is one of a small set of non-thermal radio emitting massive O-star binaries. The non-thermal radiation is due to synchrotron emission in the colliding-wind region. Cyg OB2 #9 was only recently discovered to be a binary system and…

Solar and Stellar Astrophysics · Physics 2020-12-09 R. Blomme , Y. Naze , D. Volpi , M. De Becker , R. K. Prinja , J. M. Pittard , E. R. Parkin , O. Absil

The Cyg OB2 #5 system is thought to consist of a short-period (6.6 d) eclipsing massive binary orbited by an OB-star orbiting with a period of ~6.7 yr; these stars in turn are orbited by a distant early B-star with a period of thousands of…

Solar and Stellar Astrophysics · Physics 2020-12-09 Gregor Rauw , Yaël Nazé , Fran Campos

Cyg OB2 #5 is a contact binary system with variable radio continuum emission. This emission has a low-flux state where it is dominated by thermal emission from the ionized stellar wind and a high-flux state where an additional non-thermal…

Astrophysics of Galaxies · Physics 2010-05-14 Luis F. Rodriguez , Yolanda Gomez , Laurent Loinard , Amy J. Mioduszewski

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

We present the results of a spectroscopic campaign revealing that the non-thermal radio emitter Cyg OB2 #8A is an O6 + O5.5 binary system. We propose the very first orbital solution indicating a period of about 21.9 days. The system appears…

Astrophysics · Physics 2009-11-10 M. De Becker , G. Rauw , J. Manfroid

Cyg OB2 #5 is a contact binary system (O6.5-7+O5.5-6) with associated radio continuum emission. Two compact ($\leq 0\rlap.{"}3$) radio continuum components have been reported previously: the primary one is associated with the contact binary…

Solar and Stellar Astrophysics · Physics 2011-11-29 G. N. Ortiz-Leon , L. F. Rodriguez , M. Tapia

We study the non-thermal radio emission of the binary Cyg OB2 No. 8A, to see if it is variable and if that variability is locked to the orbital phase. We investigate if the synchrotron emission generated in the colliding-wind region of this…

Solar and Stellar Astrophysics · Physics 2015-05-19 R. Blomme , M. De Becker , D. Volpi , G. Rauw

The properties of the early-type binary Cyg OB2 #5 have been debated for many years and spectroscopic and photometric investigations yielded conflicting results. We have attempted to constrain the physical properties of the binary by…

Astrophysics · Physics 2009-11-13 N. Linder , G. Rauw , J. Manfroid , Y. Damerdji , M. De Becker , P. Eenens , P. Royer , J. -M. Vreux

During recent years some non-thermal radio emitting OB stars have been discovered to be binary, or multiple systems. The non-thermal emission is due to synchrotron radiation that is emitted by electrons accelerated up to high energies. The…

High Energy Astrophysical Phenomena · Physics 2011-10-13 D. Volpi , R. Blomme , M. De Becker , Y. Nazé

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

Some OB stars show variable non-thermal radio emission. The non-thermal emission is due to synchrotron radiation that is emitted by electrons accelerated to high energies. The electron acceleration occurs at strong shocks created by the…

High Energy Astrophysical Phenomena · Physics 2015-05-20 Delia Volpi , Ronny Blomme , Michael De Becker , Gregor Rauw

Aims: We wish to study the origin of the X-ray emission of three massive stars in the Cyg OB2 association: Cyg OB2 #5, #8A, #12. Methods: To this aim, dedicated X-ray observations from XMM and Swift are used, as well as archival ROSAT and…

Solar and Stellar Astrophysics · Physics 2015-06-18 Constantin Cazorla , Yael Naze , Gregor Rauw

After the first detection of its binary nature, the spectroscopic monitoring of the non-thermal radio emitter Cyg OB2 #9 (P=2.4yrs) has continued, doubling the number of available spectra of the star. Since the discovery paper of 2008, a…

Solar and Stellar Astrophysics · Physics 2012-09-26 Y. Naze , Y. Damerdji , G. Rauw , D. C. Kiminki , L. Mahy , H. A. Kobulnicky , T. Morel , M. De Becker , P. Eenens , C. Barbieri

Many early-type stars are in binary systems. A number of them shows radio emissivity with periodic variability. This variability is associated with non-thermal synchrotron radiation emitted by relativistic electrons. The strong shocks…

High Energy Astrophysical Phenomena · Physics 2011-01-31 Delia Volpi

Context: Nonthermal radio emission in massive stars is expected to arise in wind-wind collisions occurring inside a binary system. One such case, the O-type star Cyg OB2 #9, was proven to be a binary only four years ago, but the orbital…

Solar and Stellar Astrophysics · Physics 2015-06-11 Y. Naze , L. Mahy , Y. Damerdji , H. A. Kobulnicky , J. M. Pittard , E. R. Parkin , O. Absil , R. Blomme

In colliding-wind binaries, shocks accelerate a fraction of the electrons up to relativistic speeds. These electrons then emit synchrotron radiation at radio wavelengths. Whether or not we detect this radiation depends on the size of the…

Solar and Stellar Astrophysics · Physics 2009-05-27 R. Blomme
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