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Trumpler 16-26: A new centrifugal magnetosphere star discovered via SDSS/APOGEE H-band spectroscopy

Monthly Notices of the Royal Astronomical Society, ISSN: 1365-2966, Vol: 516, Issue: 2, Page: 2812-2823
2022
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Article Description

We report the discovery of a new example of the rare class of highly magnetized, rapidly rotating, helium enhanced, early B stars that produce anomalously wide hydrogen emission due to a centrifugal magnetosphere (CM). The star is Trumpler 16-26, a B1.5 V member of the Trumpler 16 open cluster. A CM was initially suspected based on hydrogen Brackett series emission observed in SDSS/APOGEE H-band spectra. Similar to the other stars of this type, the emission was highly variable and at all times remarkable due to the extreme velocity separations of the double peaks (up to 1300 km s-1.) Another clue lay in the TESS light curve, which shows two irregular eclipses per cycle when phased with the likely 0.971 8115-d rotation period, similar to the behaviour of the well-known CM host star σ Ori E. To confirm a strong magnetic field and rotation-phase-locked variability, we initiated a follow-up campaign consisting of optical spectropolarimetry and spectroscopy. The associated data revealed a longitudinal magnetic field varying between-3.1 and +1.6 kG with the period found from photometry. The optical spectra confirmed rapid rotation (v sin i = 195 km s-1), surface helium enhancement, and wide, variable hydrogen emission. Tr16-26 is thus confirmed as the 20th known, the fourth most rapidly rotating, and the faintest CM host star yet discovered. With a projected dipole magnetic field strength of Bd > 11 kG, Tr16-26 is also among the most magnetic CM stars.

Bibliographic Details

S. Drew Chojnowski; David L. Nidever; Swetlana Hubrig; Jonathan Labadie-Bartz; Thomas Rivinius; Markus Schöller; Ewa Niemczura; Amelia M. Stutz; C. A. Hummel

Oxford University Press (OUP)

Physics and Astronomy; Earth and Planetary Sciences

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