2020A&A...643A.110Z


Query : 2020A&A...643A.110Z

2020A&A...643A.110Z - Astronomy and Astrophysics, volume 643A, 110-110 (2020/11-1)

β Cas: The first δ Scuti star with a dynamo magnetic field.

ZWINTZ K., NEINER C., KOCHUKHOV O., RYABCHIKOVA T., PIGULSKI A., MULLNER M., STEINDL T., KUSCHNIG R., HANDLER G., MOFFAT A.F.J., PABLO H., POPOWICZ A. and WADE G.A.

Abstract (from CDS):


Context. F-type stars are characterised by several physical processes such as different pulsation mechanisms, rotation, convection, diffusion, and magnetic fields. The rapidly rotating δ Scuti star β Cas can be considered as a benchmark star to study the interaction of several of these effects.
Aims. We investigate the pulsational and magnetic field properties of β Cas. We also determine the star's apparent fundamental parameters and chemical abundances.
Methods. Based on photometric time series obtained from three different space missions (BRITE-Constellation, SMEI, and TESS), we conduct a frequency analysis and investigate the stability of the pulsation amplitudes over four years of observations. We investigate the presence of a magnetic field and its properties using spectropolarimetric observations taken with the Narval instrument by applying the least-squares deconvolution and Zeeman-Doppler imaging techniques.
Results. The star β Cas shows only three independent p-mode frequencies down to the few ppm-level; its highest amplitude frequency is suggested to be an n=3, l=2, m=0 mode. Its magnetic field structure is quite complex and almost certainly of a dynamo origin. The atmosphere of β Cas is slightly deficient in iron peak elements and slightly overabundant in C, O, and heavier elements.
Conclusions. Atypically for δ Scuti stars, we can only detect three pulsation modes down to exceptionally low noise levels for β Cas. The star is also one of very few δ Scuti pulsators known to date to show a measurable magnetic field and the first δ Scuti star with a dynamo magnetic field. These characteristics make β Cas an interesting target for future studies of dynamo processes in the thin convective envelopes of F-type stars, the transition region between fossil and dynamo fields, and the interaction between pulsations and magnetic field.

Abstract Copyright: © ESO 2020

Journal keyword(s): stars: individual: beta Cas - stars: variables: delta Scuti - stars: atmospheres - stars: magnetic field - stars: abundances

VizieR on-line data: <Available at CDS (J/A+A/643/A110): brite1.dat brite2.dat brite3.dat brite4.dat brite5.dat brite6.dat brite7.dat smei.dat>

Simbad objects: 5

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Number of rows : 5
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 * bet Cas dS* 00 09 10.68518 +59 08 59.2120 2.73 2.61 2.27 1.97 1.77 F2III 531 0
2 V* V410 Tau Or* 04 18 31.1081296680 +28 27 16.155955728   12.13 10.75 8.45 9.408 K3Ve 462 0
3 V* V1069 Tau Or* 04 18 51.7036254480 +17 23 16.582694856   13.32 12.22 12.22 10.944 K7e 126 0
4 V* AB Dor TT* 05 28 44.8712165880 -65 26 55.199147208 8.259 7.856 6.999 6.496 5.993 K0V 1023 0
5 HD 261711 * 06 40 16.1932181208 +09 17 13.099059708   11.44 11.3     A2/3 24 0

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