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Related papers: The B Fields in OB Stars (BOB) Survey

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The "B fields in OB stars" (BOB) collaboration is based on an ESO Large Programme, to study the occurrence rate, properties, and ultimately the origin of magnetic fields in massive stars. In the framework of this programme, we carried out…

Within the context of the collaboration "B fields in OB stars (BOB)", we used the FORS2 low-resolution spectropolarimeter to search for a magnetic field in 50 massive stars, including two reference magnetic massive stars. Because of the…

Recent magnetic field surveys in O- and B-type stars revealed that about 10% of the core-hydrogen-burning massive stars host large-scale magnetic fields. The physical origin of these fields is highly debated. To identify and model the…

To understand the origin of the magnetic fields in massive stars as well as their impact on stellar internal structure, evolution, and circumstellar environment, within the MiMeS project, we searched for magnetic objects among a large…

About 5% of upper main sequence stars are permeated by a strong magnetic field, the origin of which is still matter of debate. With this work we provide observational material to study how magnetic fields change with the evolution of stars…

Astrophysics · Physics 2009-11-11 S. Bagnulo , J. D. Landstreet , E. Mason , V. Andretta , J. Silaj , G. A. Wade

Theories on the origin of magnetic fields in massive stars remain poorly developed, because the properties of their magnetic field as function of stellar parameters could not yet be investigated. To investigate whether magnetic fields in…

The presence of magnetic fields at the surfaces of many massive stars has been suspected for decades, to explain the observed properties and activity of OB stars. However, very few genuine high-mass stars had been identified as magnetic…

Solar and Stellar Astrophysics · Physics 2015-05-20 V. Petit

The Magnetism in Massive Stars (MiMeS) survey represents a high precision systematic search for magnetic fields in hot, massive OB stars. To date, MiMeS Large Programs (ESPaDOnS@CFHT, Narval@TBL, [email protected]) and associated PI programs…

Solar and Stellar Astrophysics · Physics 2012-06-26 G. A. Wade , J. H. Grunhut , the MiMeS Collaboration

Context. The first magnetic fields in O- and B-type stars that do not belong to the Bp-star class, have been discovered. The cyclic UV wind-line variability, which has been observed in a significant fraction of early-type stars, is likely…

Solar and Stellar Astrophysics · Physics 2011-08-15 R. S. Schnerr , H. F. Henrichs , C. Neiner , E. Verdugo , J. de Jong , V. C. Geers , K. Wiersema , B. van Dalen , A. Tijani , B. Plaggenborg , K. L. J. Rygl

Our knowledge of the presence and the strength of magnetic fields in massive O and B-type stars remains very poor. Recent observations indicate that the presence of magnetic fields is responsible for a wide range of phenomena observed in…

Solar and Stellar Astrophysics · Physics 2013-09-24 S. Hubrig , M. Schoeller , I. Ilyin , G. Lo Curto

To investigate statistically whether magnetic fields in massive stars are ubiquitous or appear in stars with specific spectral classification, certain ages, or in a special environment, we acquired 41 new spectropolarimetric observations…

Massive B-type stars with strong magnetic fields and fast rotation are very rare and provide a mystery for theories of both star formation and magnetic field evolution. Only two such stars, called sigma Ori E analogs, were previously known.…

Solar and Stellar Astrophysics · Physics 2015-06-03 S. Hubrig , M. Schöller , L. Fossati , T. Morel , N. Castro , L. M. Oskinova , N. Przybilla , S. S. Eikenberry , M. F. Nieva , N. Langer

We report on the status of our spectropolarimetric observations of massive stars. During the last years, we have discovered magnetic fields in many objects of the upper main sequence, including Be stars, beta Cephei and Slowly Pulsating B…

Solar and Stellar Astrophysics · Physics 2015-05-30 M. Schoeller , S. Hubrig , I. Ilyin , N. V. Kharchenko , M. Briquet , N. Langer , L. M. Oskinova , the MAGORI collaboration

Various observational properties of Ap/Bp stars have been well-established such as the often-cited 10% incidence rate of strong, organized magnetic fields amongst all A- and B-type stars. However, these inferences have generally been drawn…

Solar and Stellar Astrophysics · Physics 2017-12-11 James Sikora , Gregg A. Wade , Jennifer Power

Strong, globally-organized magnetic fields are found for a small fraction of O, B, and A stars. At the same time, many theoretical and indirect observational studies suggested ubiquitous presence of weak localized magnetic fields at the…

Solar and Stellar Astrophysics · Physics 2015-06-15 O. Kochukhov , N. Sudnik

In the context of the MiMeS survey of magnetism in massive stars, 85 classical Be stars were observed in circular polarization with the aim of detecting magnetic fields at their surfaces. No direct evidence of such fields is found, in…

Solar and Stellar Astrophysics · Physics 2014-11-25 G. A. Wade , V. Petit , J. Grunhut , C. Neiner

The number of magnetic stars detected among massive stars is small; nevertheless, the role played by the magnetic field in stellar evolution cannot be disregarded. Links between line profile variability, enhancements/depletions of surface…

Circumstantial evidence suggests that magnetism and enhanced X-ray emission are likely correlated in early B-type stars: similar fractions of them ($\sim$ 10 %) are strong and hard X-ray sources and possess strong magnetic fields. It is…

Solar and Stellar Astrophysics · Physics 2018-02-14 I. Pillitteri , L. Fossati , N. Castro Rodriguez , L. Oskinova , S. J. Wolk

Detection of magnetic fields has been reported in several sdO and sdB stars. Recent literature has cast doubts on the reliability of most of these detections. We revisit data previously published in the literature, and we present new…

Solar and Stellar Astrophysics · Physics 2015-06-04 John D Landstreet , Stefano Bagnulo , Luca Fossati , Stefan Jordan , Simon J O'Toole

Despite their rarity, massive stars dominate the ecology of galaxies via their strong, radiatively-driven winds throughout their lives and as supernovae in their deaths. However, their evolution and subsequent impact on their environment…

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