Detection of ultra-weak magnetic fields in Am stars: beta UMa and theta Leo
arXiv:1601.01829 · doi:10.1051/0004-6361/201527556
Abstract
An extremely weak circularly polarized signature was recently discovered in spectral lines of the chemically peculiar Am star Sirius A. A weak surface magnetic field was proposed to account for the observed polarized signal, but the shape of the phase-averaged signature, dominated by a prominent positive lobe, is not expected in the standard theory of the Zeeman effect. We aim at verifying the presence of weak circularly polarized signatures in two other bright Am stars, beta UMa and theta Leo, and investigating the physical origin of Sirius-like polarized signals further. We present here a set of deep spectropolarimetric observations of beta UMa and theta Leo, observed with the NARVAL spectropolarimeter. We analyzed all spectra with the Least Squares Deconvolution multiline procedure. To improve the signal-to-noise ratio and detect extremely weak signatures in Stokes V profiles, we co-added all available spectra of each star (around 150 observations each time). Finally, we ran several tests to evaluate whether the detected signatures are consistent with the behavior expected from the Zeeman effect. The line profiles of the two stars display circularly polarized signatures similar in shape and amplitude to the observations previously gathered for Sirius A. Our series of tests brings further evidence of a magnetic origin of the recorded signal. These new detections suggest that very weak magnetic fields may well be present in the photospheres of a significant fraction of intermediate-mass stars. The strongly asymmetric Zeeman signatures measured so far in Am stars (featuring a dominant single-sign lobe) are not expected in the standard theory of the Zeeman effect and may be linked to sharp vertical gradients in photospheric velocities and magnetic field strengths.
References in corpus (7)
- Weak magnetic fields in Ap/Bp stars: Evidence for a dipole field lower limit and a tentative interpretation of the magnetic dichotomy
- Spectropolarimetric observations of the transiting planetary system of the K dwarf HD 189733
- Spots on Am stars
- 3D evolution of magnetic fields in a differentially rotating stellar radiative zone
- Study of single-lobed circular polarization profiles in the quiet Sun
- Stokes magnetic Doppler imaging of Ap stars - III. Next generation chemical abundance mapping of Alpha 2 CVn
- A search for weak or complex magnetic fields in the the B3V star iota Herculis
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- Envelope Convection, Surface Magnetism and Spots in A- and late B-type Stars
- The magnetic fields of intermediate-mass T Tauri stars : I. Magnetic detections and fundamental stellar parameters
- A Volume-Limited Survey of mCP Stars Within 100pc I: Fundamental Parameters and Chemical Abundances
- MOBSTER -- VI. The crucial influence of rotation on the radio magnetospheres of hot stars
- MOBSTER - II. Identification of rotationally variable A stars observed with \emph{TESS} in Sectors 1 to 4
- TESS survey of rotational and pulsational variability of mercury-manganese stars
- Discovery of a very weak magnetic field on the Am star Alhena
- The MiMeS survey of Magnetism in Massive Stars: Magnetic properties of the O-type star population
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- Testing the fossil field hypothesis: could strongly magnetised OB stars produce all known magnetars?
- Magnetic geometry and surface differential rotation of the bright Am star Alhena A
- Interplay between magnetic fields and differential rotation in a stably stratified stellar radiative zone
- Detecting deep axisymmetric toroidal magnetic fields in stars. The traditional approximation of rotation for differentially rotating deep spherical shells with a general azimuthal magnetic field
- Magnetism in High-Mass Stars
- A spectroscopic test of the rotational modulation origin of periodic \emph{Kepler} photometric variability of A-type stars
- Spot distribution and fast surface evolution on Vega
- Rotation and spots in normal A and Am/Fm stars
- Rotational modulation in A and F stars: Magnetic stellar spots or convective core rotation?
- Search for exoplanets and brown dwarfs with VLBI
- Angular momentum transport in a contracting stellar radiative zone embedded in a large scale magnetic field
- Surface structure of 45 Hercules: An otherwise unremarkable Ap star with a surprisingly weak magnetic field
- Weak magnetic field, solid-envelope rotation, and wave-induced N-enrichment in the SPB star Cassiopeiae
- Fossil magnetic fields in intermediate-mass and massive stars
- KELT-17: a chemically peculiar Am star and a hot-Jupiter planet
- A decade-long magnetic monitoring of Vega
- Finding magnetic north: an extraordinary magnetic field detection in Polaris and first results of a magnetic survey of classical Cepheids
- Rotational Velocities of Am and Non-CP Stars based on Kepler and LAMOST DR5
- Ultraviolet Spectropolarimetry: Investigating stellar magnetic field diagnostics
- A conclusive non-detection of magnetic field in the Am star o Peg with high-precision near-infrared spectroscopy
- Investigation of the shortest period Am type eclipsing binary TYC 6408-989-1
- Are Am stars and hot-Jupiter planets related?
- Surface magnetic field of the A-type metallic-line star omicron Pegasi revisited
- Exploring the probing power of gamma-Dor's inertial dip for core magnetism: case of a toroidal field
- Chronos --- Taking the pulse of our Galactic neighbourhood (ESA Voyage 2050 White Paper)
- 50 Dra: Am-type twins with additional variability in a non-eclipsing system
- Stellar Magnetism
- Stable magnetic fields and changing starspots on Vega -- An ultra-deep decadal survey at Pic du Midi and OHP