Linear spectropolarimetry across the optical spectrum of Herbig Ae/Be stars
arXiv:1607.02440 · doi:10.1093/mnras/stw1534
Abstract
We present the results of spectropolarimetric observations of 12 Herbig Ae/Be objects. Our data have the largest spectropolarimetric wavelength coverage, 4560 Å to 9480 Å, published to date. A change in linear polarisation across the Hα line, is detected in all objects. Such a line effect reveals the fact that stellar photons are scattered off free electrons that are not distributed in a spherically symmetric volume, suggesting the presence of small disks around these accreting objects. Thanks to the large wavelength coverage, we can report that Hα is the spectral line in the optical wavelength range that is most sensitive to revealing deviations from spherical symmetry, and the one most likely to show a line effect across the polarisation in such cases. Few other spectral lines display changes in polarisation across the line. In addition, Hα is the only line which shows an effect across its absorption component in some sources. We present a scenario explaining this finding and demonstrate that the detection of the line effect strongly relies on the number of photons scattered into our line of sight. We highlight the special case of R Mon, which is the only object in our sample to show many lines with a polarisation effect, which is much stronger than in all other objects. Given that the object and its nebulosity is spatially resolved, we argue that this is due to scattering of the stellar and emission spectrum off circumstellar dust.
22 pages, 13 figures, Accepted for publication in MNRAS
References in corpus (5)
- Investigating the inner discs of Herbig Ae/Be stars with CO bandhead and Br Gamma emission
- On the difference between Herbig Ae and Herbig Be stars
- A New Mechanism for Polarizing Light from Obscured Stars
- Models of Forbidden Line Emission Profiles from Axisymmetric Stellar Winds
- Linear line spectropolarimetry of Herbig Ae/Be stars
Cited by in corpus (5)
- A Statistical Spectropolarimetric Study of Herbig Ae/Be Stars
- Medium resolution near-infrared spectroscopy of Massive Young Stellar Objects
- Tracing Accretion onto Herbig Ae/Be Stars Using the Brγ Line
- BCD spectrophotometry for massive stars in transition phases
- Evolution of the Accretion Rate of Young Intermediate Mass Stars: Implications for Disk Evolution and Planet Formation