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相关论文: Orbital parameters, chemical composition, and magn…

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The origin of the strong magnetic fields observed in chemically peculiar Ap and Bp stars stars has long been debated. The recent discovery of magnetic fields in the intermediate mass pre-main sequence Herbig Ae and Be stars links them to Ap…

The nearby B-type star $\rho$ Oph A was recently identified as a rapidly rotating magnetic B-type star with variable radio and X-ray emission consistent with a magnetospheric origin. We present a high-resolution spectropolarimetric time…

An accident of misidentification has brought to light the interesting system HD 191588, a new RS CVn-type spectroscopic binary. A radial-velocity study of the primary star, the only seen component, carried out at the Observatoire de…

天体物理学 · 物理学 2008-11-26 Roger R. F. Griffin , Nicole Ginestet , Jean-Michel Carquillat

In this paper we report the results of high-resolution circular spectropolarimetric monitoring of the Herbig Ae star V380 Ori, in which we discovered a magnetic field in 2005. A careful study of the intensity spectrum reveals the presence…

太阳与恒星天体物理 · 物理学 2015-05-13 E. Alecian , G. A. Wade , C. Catala , S. Bagnulo , T. Böhm , J. -C. Bouret , J. -F. Donati , C. P. Folsom , J. Grunhut , J. D. Landstreet

Planet(s) in binaries are unique architectures for testing predictions of planetary formation and evolution theories in very hostile environments. We used the IRDIS dual-band imager of SPHERE at VLT, and the speckle interferometric camera…

We report time-resolved, high-resolution optical spectropolarimetric observations of the young double-lined spectroscopic binary V1878 Ori. Our observations were collected with the ESPaDOnS spectropolarimeter at the Canada-France-Hawaii…

We report the detection of a strong, organized magnetic field in the secondary component of the massive O8III/I+O7.5V/III double-lined spectroscopic binary system HD 47129 (Plaskett's star), in the context of the Magnetism in Massive Stars…

Intermediate-mass, magnetic chemically peculiar (Ap) stars provide a unique opportunity to study the topology of stellar magnetic fields in detail and to investigate magnetically driven processes of spot formation. Here we aim to derive the…

The study of magnetic fields of cool chemically peculiar stars with effective temperatures less than 10 000 K is very important to understand the nature of their magnetism. We present new results of a long-term spectroscopic monitoring of…

太阳与恒星天体物理 · 物理学 2015-06-03 E. A. Semenko , L. A. Kichigina , E. Yu. Kuchaeva

Double-lined spectroscopic orbital elements have recently been found for the central binary in the massive triple, delta Orionis A based on radial velocities from cross-correlation techniques applied to IUE high dispersion spectra and He I…

New spectra have been obtained with the ESPaDOnS spectropolarimeter supplemented with unpolarised spectra from the ESO UVES, UVES-FLAMES, and HARPS spectrographs of the very peculiar large-field magnetic Ap star HD 318107, a member of the…

太阳与恒星天体物理 · 物理学 2015-05-30 J. D. Bailey , J. D. Landstreet , S. Bagnulo , L. Fossati , O. Kochukhov , C. Paladini , J. Silvester , G. Wade

HD~69479/80 is a composite-spectrum binary whose components are a late-G giant and an early-A dwarf. The orbit has a period of only 91 days (which seems short for a system containing a cool giant with a radius of $\sim$13 solar radii), and…

太阳与恒星天体物理 · 物理学 2020-11-04 R. E. M. Griffin , R. F. Griffin

Context. The existence of a significant population of Ap stars with very long rotation periods (up to several hundred years) has progressively emerged over the past two decades. However, only lower limits of the periods are known for most…

太阳与恒星天体物理 · 物理学 2016-02-03 G. Mathys , I. I. Romanyuk , D. O. Kudryavtsev , J. D. Landstreet , D. M. Pyper , S. J. Adelman

After our recent discovery of four magnetic Herbig stars, we have decided to study in detail one of them, HD 200775, to determine if its magnetic topology is similar to that of the main sequence magnetic stars. With this aim, we monitored…

We present a comprehensive study of the massive binary system HM1~8, based on multi-epoch high resolution spectroscopy, $V$-band photometry and archival X-ray data. Spectra from the OWN Survey, a high resolution optical monitoring of…

Using observations of rapidly rotating roAp star HD 12098, obtained with 6m telescope of SAO RAS in 2005-2008 in nine rotational phases (0.001-0.817), and code V. Tsymbal ROTATE we identified 3 lithium spots on the surface of star, one of…

太阳与恒星天体物理 · 物理学 2013-04-16 A. Shavrina , N. S. Polosukhina , N. A. Drake , D. O. Kudryavtsev , V. F. Gopka , V. A. Yushchenko , A. V. Yushchenko

We report new spectroscopic observations of the magnetic Of?p star HD 148937 obtained since 2015 that differ qualitatively from its extensive historical record of weak, periodic spectral variations. This remarkable behaviour represents…

太阳与恒星天体物理 · 物理学 2020-12-09 G. A. Wade , J. V. Smoker , C. J. Evans , I. D. Howarth , R. Barba , N. L. J. Cox , N. Morrell , Y. Nazé , J. Cami , A. Farhang , N. R. Walborn , J. Arias , R. Gamen

While about two dozen Herbig Ae/Be stars have been reported to be magnetic, only two of them, HD101412 and HD190073, have had their magnetic field geometries studied in the past. The knowledge of the magnetic field structure is important to…

太阳与恒星天体物理 · 物理学 2026-05-28 S. P. Järvinen , S. Hubrig , M. Schöller , I. Ilyin , H. N. Adigozalzade , N. Z. Ismailov , U. Z. Bashirova , S. A. Alishov

Detailed information about the magnetic geometry, atmospheric abundances and radial velocity variations has been obtained for the magnetic standard star HD 94660 based on high-dispersion spectroscopic and spectropolarimetric observations…

太阳与恒星天体物理 · 物理学 2015-03-11 J. D. Bailey , J. Grunhut , J. D. Landstreet

The presence of a magnetic field can have a strong impact on the evolution of a binary star. However, only a dozen of magnetic OB binaries are known as of today and available to study this effect, including very few magnetic pulsating…

太阳与恒星天体物理 · 物理学 2015-06-18 C. Neiner , A. Tkachenko , the MiMeS collaboration