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We report the results of a comprehensive study of the spectroscopic binary (SB2) system HD 34736 hosting two chemically peculiar (CP) late B-type stars. Using new and archival observational data, we characterise the system and its…

We report high-resolution spectroscopic observations of the young star HD 34700, which confirm it to be a double-lined spectroscopic binary. We derive an accurate orbital solution with a period of 23.4877 +/- 0.0013 days and an eccentricity…

Astrophysics · Physics 2009-11-10 Guillermo Torres

The study of magnetic fields of cool chemically peculiar stars with effective temperatures less than 10 000 K is very important to understand the nature of their magnetism. We present new results of a long-term spectroscopic monitoring of…

Solar and Stellar Astrophysics · Physics 2015-06-03 E. A. Semenko , L. A. Kichigina , E. Yu. Kuchaeva

After our recent discovery of four magnetic Herbig stars, we have decided to study in detail one of them, HD 200775, to determine if its magnetic topology is similar to that of the main sequence magnetic stars. With this aim, we monitored…

There is a small group of peculiar early-type stars on the main sequence that show different rotation velocities from different spectral lines. This inconsistency might be due to the binary nature of these objects. We aim to verify this…

The magnetic field in the O9.7 V star HD54879 has been monitored for almost a decade. Spectropolarimetric observations reveal a rather strong mean longitudinal magnetic field that varies with a period of about 7.41 yr. Observations in the…

Solar and Stellar Astrophysics · Physics 2024-03-01 Manfred Küker , Silva Järvinen , Swetlana Hubrig , Ilya Ilyin , Markus Schöller

We measured the magnetic field of the bright, evolved hot subdwarf HD 76431 by means of high-resolution spectropolarimetry. In contrast to previous measurements we were not able to detect a significant magnetic field. We discuss the…

Solar and Stellar Astrophysics · Physics 2011-12-14 G. Chountonov , S. Geier

With an orbital period of about 3.078 days, the double-lined spectroscopic binary HD 48099 is, still now, the only short-period O+O system known in the Mon OB2 association. Even though an orbital solution has already been derived for this…

Solar and Stellar Astrophysics · Physics 2014-11-20 L. Mahy , G. Rauw , F. Martins , Y. Naze , E. Gosset , M. De Becker , H. Sana , P. Eenens

The number of magnetic stars detected among massive stars is small; nevertheless, the role played by the magnetic field in stellar evolution cannot be disregarded. Links between line profile variability, enhancements/depletions of surface…

We report the detection of a strong, reversing magnetic field and variable H-alpha emission in the bright helium-weak star HD 176582 (HR 7185). Spectrum, magnetic and photometric variability of the star are all consistent with a precisely…

Solar and Stellar Astrophysics · Physics 2015-05-27 David A. Bohlender , Dmitry Monin

We find the star HD 34700 to be a double-lined spectroscopic binary. We also identify it as a weak-line T Tauri object The spectra of both components are very similar and both show the Li I feature at 6708 \AA. Strong arguments in favour of…

Astrophysics · Physics 2016-08-16 A. Arellano Ferro , Sunetra Giridhar

We obtained thirteen spectropolarimetric observations of the strongly magnetic rapidly oscillating Ap star HD154708 over three months with the multi-mode instrument FORS1, installed at the 8-m Kueyen telescope of the VLT. These observations…

Solar and Stellar Astrophysics · Physics 2015-05-13 S. Hubrig , G. Mathys , D. W. Kurtz , M. Schoeller , V. G. Elkin , H. F. Henrichs

Only eleven O-type stars have been confirmed to possess large-scale organized magnetic fields. The presence of a -600G longitudinal magnetic field in the O9.7V star HD54879 with a lower limit of the dipole strength of ~2kG, was discovered a…

Solar and Stellar Astrophysics · Physics 2019-02-19 S. Hubrig , M. Kueker , S. P. Jarvinen , A. F. Kholtygin , M. Schöller , E. B. Ryspaeva , D. D. Sokoloff

The early-type chemically peculiar stars often show strong magnetic fields on their surfaces. These magnetic topologies are organized on large scales and are believed to be close to an oblique dipole for most of the stars. In a striking…

Solar and Stellar Astrophysics · Physics 2015-05-20 Oleg Kochukhov , Andreas Lundin , Iosif Romanyuk , Dmitry Kudryavtsev

The results from a spectro-polarimetric study of the planet-hosting Sun-like star, HD 147513 (G5V), are presented here. Robust detections of Zeeman signatures at all observed epochs indicate a surface magnetic field, with longitudinal…

In this paper we report the results of high-resolution circular spectropolarimetric monitoring of the Herbig Ae star V380 Ori, in which we discovered a magnetic field in 2005. A careful study of the intensity spectrum reveals the presence…

Solar and Stellar Astrophysics · Physics 2015-05-13 E. Alecian , G. A. Wade , C. Catala , S. Bagnulo , T. Böhm , J. -C. Bouret , J. -F. Donati , C. P. Folsom , J. Grunhut , J. D. Landstreet

We report the detection of a strong, organized magnetic field in the secondary component of the massive O8III/I+O7.5V/III double-lined spectroscopic binary system HD 47129 (Plaskett's star), in the context of the Magnetism in Massive Stars…

HD 164492C is a spectroscopic triple stellar system that has been recently detected to possess a strong magnetic field. We have obtained high-resolution spectroscopic and spectropolarimetric observations over a timespan of two years and…

Aims. HD166734 is an eccentric eclipsing binary system composed of two supergiant O-type stars, orbiting with a 34.5-day period. In this rare configuration for such stars, the two objects mainly evolve independently, following single-star…

Solar and Stellar Astrophysics · Physics 2017-11-22 L. Mahy , Y. Damerdji , E. Gosset , C. Nitschelm , P. Eenens , H. Sana , A. Klotz

We first present the multicolor photometry results of the rapidly rotating magnetic star HD 345439 using the Nanshan One-meter Wide-field Telescope. From the photometric observations, we derive a rotational period of 0.7699\pm0.0014 day.…

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