Magnetic fields in Herbig Ae stars

被引:80
作者
Hubrig, S
Schöller, M
Yudin, RV
机构
[1] European So Observ, Santiago 19, Chile
[2] Russian Acad Sci, Cent Astron Observ, St Petersburg 196140, Russia
[3] Isaac Newton Inst Chile, St Petersburg Branch, St Petersburg, Russia
关键词
stars : pre-main-sequence; stars : polarization; stars : magnetic fields; stars : individual : HD 139614; stars : individual : HD 144432; stars : individual : HD 144668;
D O I
10.1051/0004-6361:200400091
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Herbig Ae stars are young A-type stars in the pre-main sequence evolutionary phase with masses of similar to1.5-3 M-circle dot. They show rather intense surface activity (Dunkin et al. 1997, MNRAS, 290, 165) and infrared excess related to the presence of circumstellar disks. Because of their youth, primordial magnetic fields inherited from the parent molecular cloud may be expected, but no direct evidence for the presence of magnetic fields on their surface, except in one case (Donati et al. 1997, MNRAS, 291, 658), has been found until now. Here we report observations of optical circular polarization with FORS 1 at the VLT in the three Herbig Ae stars HD 139614, HD 144432 and HD 144668. A definite longitudinal magnetic field at 4.8sigma level, <B-z> = -450 +/- 93 G, has been detected in the Herbig Ae star HD 139614. This is the largest magnetic field ever diagnosed for a Herbig Ae star. A hint of a weak magnetic field is found in the other two Herbig Ae stars, HD 144432 and HD 144668, for which magnetic fields are measured at the similar to1.6sigma and similar to2.5sigma level respectively. Further, we report the presence of circular polarization signatures in the Ca II K line in the V Stokes spectra of HD 139614 and HD 144432, which appear unresolved at the low spectral resolution achievable with FORS 1. We suggest that models involving accretion of matter from the disk to the star along a global stellar magnetic field of a specific geometry can account for the observed Zeeman signatures.
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页码:L1 / L4
页数:4
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