2015A&A...574A..79K


Query : 2015A&A...574A..79K

2015A&A...574A..79K - Astronomy and Astrophysics, volume 574A, 79-79 (2015/2-1)

Magnetic field topology and chemical spot distributions in the extreme Ap star HD 75049.

KOCHUKHOV O., RUSOMAROV N., VALENTI J.A., STEMPELS H.C., SNIK F., RODENHUIS M., PISKUNOV N., MAKAGANIUK V., KELLER C.U. and JOHNS-KRULL C.M.

Abstract (from CDS):

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 surface magnetic field geometry and chemical abundance distributions for the extraordinary Ap star HD75049. This object hosts a surface field of ∼30kG, one of the strongest known for any non-degenerate star. We used time-series of high-resolution HARPS intensity and circular polarisation observations. These data were interpreted with the help of magnetic Doppler imaging and model atmospheres incorporating effects of a non-solar chemical composition and a strong magnetic field. Based on high-precision measurements of the mean magnetic field modulus, we refined the rotational period of HD75049 to Prot=4.048267±0.000036d. We also derived basic stellar parameters, Teff=10250±250K and logg=4.3±0.1. Magnetic Doppler imaging revealed that the field topology of HD75049 is poloidal and dominated by a dipolar contribution with a peak surface field strength of 39kG. At the same time, deviations from the classical axisymmetric oblique dipolar configuration are significant. Chemical surface maps of Si, Cr, Fe, and Nd show abundance contrasts of 0.5-1.4dex, which is low compared with many other Ap stars. Of the chemical elements, Nd is found to be enhanced close to the magnetic pole, whereas Si and Cr are concentrated predominantly at the magnetic equator. The iron distribution shows low-contrast features both at the magnetic equator and the pole. The morphology of the magnetic field and the properties of chemical spots in HD75049 are qualitatively similar to those of Ap stars with weaker fields. Consequently, whatever mechanism forms and sustains global magnetic fields in intermediate-mass main-sequence stars, it operates in the same way over the entire observed range of magnetic field strengths.

Abstract Copyright:

Journal keyword(s): stars: atmospheres - stars: chemically peculiar - stars: magnetic field - starspots - stars: individual: HD 75049

Simbad objects: 10

goto Full paper

goto View the references in ADS

Number of rows : 10
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 * ksi Phe a2* 00 41 46.3972997520 -56 30 04.738422240   5.90 5.70     A3VpSrCr_Ksn 131 0
2 V* DO Eri a2* 03 55 16.1313315312 -12 05 56.727712752 6.35 6.32 6.00     A9VpSrEuCr 395 0
3 NGC 2244 334 Y*O 06 32 51.7919732079 +04 47 16.160568228 13.17 13.38 12.95 12.46 12.34 ~ 39 0
4 * 53 Cam a2* 08 01 42.4403874648 +60 19 27.806833200   6.177 6.008     A3VpSrSiCrEu 397 0
5 HD 75049 a2* 08 45 33.0714336288 -50 43 58.323425736   9.09 9.14     ApEuCr 33 0
6 HD 83368 a2* 09 36 25.40686 -48 45 04.2549   6.480 6.232     A8VSrCrEu+F9V 267 0
7 * eps UMa a2* 12 54 01.7495922 +55 57 35.362645 1.76 1.75 1.77 1.79 1.82 A1III-IVpkB9 470 0
8 * alf02 CVn a2* 12 56 01.6655889007 +38 19 06.155170512 2.44 2.76 2.88 2.98 3.05 A0VpSiEu 677 0
9 V* NN Aps a2* 15 31 27.1154643312 -71 03 43.664769144   6.76 6.87     Ap(SiCrFe) 92 0
10 V* GL Lac a2* 22 44 07.5047456400 +55 35 21.211012248   8.85 8.81     A0p 283 0

To bookmark this query, right click on this link: simbad:objects in 2015A&A...574A..79K and select 'bookmark this link' or equivalent in the popup menu


2023.10.04-21:09:11

© Université de Strasbourg/CNRS

    • Contact