Detection of anomalous element distribution in the extremely slowly rotating magnetic O9.7 V star HD 54879

Author:

Järvinen S P1ORCID,Hubrig S1,Schöller M2,Cikota A3ORCID,Ilyin I1,Hummel C A2,Küker M1

Affiliation:

1. Leibniz-Institut für Astrophysik Potsdam (AIP), An der Sternwarte 16, D-14482 Potsdam, Germany

2. European Southern Observatory, Karl-Schwarzschild-Strasse 2, D-85748 Garching, Germany

3. European Southern Observatory, Alonso de Córdova 3107, Vitacura, Santiago, Chile

Abstract

ABSTRACT The O9.7 V star HD 54879 is currently the only massive magnetic star whose magnetic field geometry and rotation period are not constrained. Over the last 3 yr, we gathered additional observations of this star, obtained using various instruments at several astronomical facilities, with the aim to constrain the rotation period and the magnetic field geometry. The new data include the first full Stokes vector observations with the Potsdam Echelle Polarimetric and Spectroscopic Instrument (PEPSI), installed at the Large Binocular Telescope. The acquired spectropolarimetric observations show a very slow magnetic field variability related to the extremely slow rotation of HD 54879, which is also indicated in a dynamical spectrum, displaying variability of the Hα line. The most intriguing result of our study is the discovery of differences in longitudinal magnetic field strengths measured using different least-squares deconvolution (LSD) masks containing lines belonging to different elements. It is the first time that such a differential analysis of the field strength in dependence of the used lines is carried out for a magnetic O-type star. Since the LSD Stokes I profiles of the studied O, Si, and He line masks remain stable over all observing epochs, we conclude that the detection of different field strengths using lines belonging to these elements is related to the different formation depths, with the He lines formed much higher in the stellar atmosphere compared to the silicon and the oxygen lines, and non-local thermodynamic equilibrium (NLTE) effects. Our numerical magnetospherical model suggests the presence of enhanced gas density that fills the volume inside the field lines close to the star.

Funder

Leibniz-Gemeinschaft

ESO

University of Arizona

Istituto Nazionale di Astrofisica

AIP

Ohio State University

Research Corporation

University of Notre Dame

University of Minnesota

University of Virginia

National Research Council Canada

Centre National de la Recherche Scientifique

University of Hawaii

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Are magnetic fields universal in O-type multiple systems?;Monthly Notices of the Royal Astronomical Society;2023-03-28

2. Quantitative spectroscopy of late O-type main-sequence stars with a hybrid non-LTE method;Astronomy & Astrophysics;2023-03

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