Super-slowly rotating Ap (ssrAp) stars: New spectroscopic observations
arXiv:2509.05457 · doi:10.1051/0004-6361/202556104
Abstract
The rotation periods of Ap stars range over five to six orders of magnitude. The origin of their differentiation remains unknown. We carry out a systematic study of the longest period Ap stars to gain insight into their properties. We analyse newly obtained spectra of a sample of super-slowly rotating Ap (ssrAp) star candidates identified by a TESS photometric survey to confirm that their projected equatorial velocity v sin i is consistent with (very) long rotation periods, to obtain a first determination of their magnetic fields, and to test their binarity. The value of v sin i in 16 of the 18 studied stars is low enough for them to have moderately to extremely long rotation periods. All stars but one are definitely magnetic; for five of them, the magnetic field was detected for the first time. Five new stars with resolved magnetically split lines were discovered. Five stars that were not previously known to be spectroscopic binaries show radial velocity variations; in one of them, lines from both components are observed.
19 pages, 11 figures. Accepted for publication in A&A
References in corpus (8)
- The Transiting Exoplanet Survey Satellite
- Pulkovo Compilation of Radial Velocities for 35495 Hipparcos Stars in a Common System
- Weak magnetic fields in Ap/Bp stars: Evidence for a dipole field lower limit and a tentative interpretation of the magnetic dichotomy
- The Magnetic Early B-type Stars I: Magnetometry and Rotation
- Discovery of 17 new sharp-lined Ap stars with magnetically resolved lines
- TESS Cycle 1 observations of roAp stars with 2-min cadence data
- Discovery of Resolved Magnetically Split Lines in SDSS/APOGEE Spectra of 157 Ap/Bp Stars
- Long-period Ap stars discovered with TESS data: The northern ecliptic hemisphere