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相关论文: Observations of magnetic fields in Herbig Ae/Be st…

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Models of magnetically driven accretion and outflows reproduce many observational properties of T Tauri stars, but the picture is much less clear for the Herbig Ae/Be stars, due to the poor knowledge of their magnetic field strength and…

太阳与恒星天体物理 · 物理学 2015-06-23 S. Hubrig , T. A. Carroll , M. Schöller , I. Ilyin

We report on the status of our spectropolarimetric studies of Herbig Ae/Be stars carried out during the last years. The magnetic field geometries of these stars, investigated with spectropolarimetric time series, can likely be described by…

太阳与恒星天体物理 · 物理学 2015-06-17 S. Hubrig , I. Ilyin , M. Schoeller , C. R. Cowley , F. Castelli , B. Stelzer , J. -F. Gonzalez , B. Wolff

In recent years Herbig Ae/Be stars receive considerable attention as their disks are believed to be the sites of on-going planet formation. Confirming the presence of magnetic fields in these stars is critical for understanding the…

太阳与恒星天体物理 · 物理学 2019-08-14 S. P. Järvinen , T. A. Carroll , S. Hubrig , I. Ilyin , M. Schöller

Herbig Ae/Be stars are young, pre-main-sequence stars that sample the transition in structure and evolution between low- and high-mass stars, providing a key test of accretion processes in higher-mass stars. Few Herbig Ae/Be stars have…

Among the A/B stars, about 5% host large-scale organised magnetic fields. These magnetic stars show also abundance anomalies in their spectra, and are therefore called the magnetic Ap/Bp stars. Most of these stars are also slow rotators…

Observations of magnetic fields of stars at the pre-main sequence phase can provide important new insights into the complex physics of the late stages of star formation. This is especially true at intermediate stellar masses, where magnetic…

太阳与恒星天体物理 · 物理学 2009-01-21 G. A. Wade , E. Alecian , J. Grunhut , C. Catala , S. Bagnulo , C. P. Folsom , J. D. Landstreet

Among the 21 Herbig Ae/Be stars studied, new detections of a magnetic field were achieved in six stars. For three Herbig Ae/Be stars, we confirm previous magnetic field detections. The largest longitudinal magnetic field, <B_z> = -454+-42G,…

太阳与恒星天体物理 · 物理学 2015-05-13 S. Hubrig , B. Stelzer , M. Schoeller , C. Grady , O. Schuetz , M. A. Pogodin , M. Cure , K. Hamaguchi , R. V. Yudin

The origin of magnetic fields in intermediate-mass and high-mass stars is fundamentally a mystery. Clues toward solving this basic astrophysical problem can likely be found at the pre-main sequence (PMS) evolutionary stage. With this work,…

天体物理学 · 物理学 2008-11-26 G. A. Wade , S. Bagnulo , D. Drouin , J. D. Landstreet , D. Monin

Models of magnetically-driven accretion and outflows reproduce many observational properties of T Tauri stars. This concept is not well established for the more massive Herbig Ae/Be stars. We intend to examine the magnetospheric accretion…

Models of magnetically driven accretion and outflows reproduce many observational properties of T Tauri stars. For the more massive Herbig Ae/Be stars, the corresponding picture is not well established. Nonetheless, it is expected that…

太阳与恒星天体物理 · 物理学 2019-01-15 Markus Schöller , Swetlana Hubrig , Mikhail A. Pogodin , Silva P. Jarvinen , Natalia A. Drake , J. Andres Cahuasqui

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

Our recent discoveries of magnetic fields in a small number of Herbig Ae/Be (HAeBe) stars, the evolutionary progenitors of main sequence A/B stars, raise new questions about the origin of magnetic fields in the intermediate mass stars. The…

We present evidence of magnetically-mediated disk accretion in Herbig Ae/Be stars. Magnetospheric accretion models of Balmer and sodium profiles calculated with appropriate stellar and rotational parameters are in qualitative agreement with…

天体物理学 · 物理学 2009-11-10 J. Muzerolle , P. D'Alessio , N. Calvet , L. Hartmann

We are investigating the magnetic characteristics of pre-main sequence Herbig Ae/Be stars, with the aim of (1) understanding the origin and evolution of magnetism in intermediate-mass stars, and (2) exploring the influence of magnetic…

Strong, kilo-Gauss, magnetic fields are required to explain a range of observational properties in young, accreting pre-main sequence (PMS) systems. We review the techniques used to detect magnetic fields in PMS stars. Key results from a…

太阳与恒星天体物理 · 物理学 2015-06-18 Gaitee A. J. Hussain , Evelyne Alecian

We present the results of a new magnetic field survey of Herbig Ae/Be and A debris disk stars. They are used to determine whether magnetic field properties in these stars are correlated with the mass-accretion rate, disk inclinations,…

太阳与恒星天体物理 · 物理学 2009-11-13 S. Hubrig , C. Grady , M. Schoeller , 0. Schuetz , B. Stelzer , M. Pogodin , M. Cure , R. Yudin

Today, one of the greatest challenges concerning the Ap/Bp stars is to understand the origin of their slow rotation and their magnetic fields. The favoured hypothesis for the latter is the fossil field, which implies that the magnetic…

Among the main sequence intermediate mass A and B stars, around 5% host large-scale organized magnetic fields. Most of these stars are very slow rotators compared to their non-magnetic counterparts, and show photospheric abundance…

Recent observational studies suggest that Be stars most likely are formed through the process of mass transfer in binary systems. In view of the wide consensus that the origin of the magnetic field in stars with radiative envelopes involves…

太阳与恒星天体物理 · 物理学 2026-05-07 S. Hubrig , S. P. Järvinen , M. Schöller , I. Ilyin

Studies of stellar magnetism at the pre-main sequence phase can provide important new insights into the detailed physics of the late stages of star formation, and into the observed properties of main sequence stars. This is especially true…

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