Near-Infrared Circular Polarization Survey in Star-Forming Regions: Correlations and Trends
arXiv:1410.2947 · doi:10.1088/2041-8205/795/1/L16
Abstract
We have conducted a systematic near-infrared circular polarization (CP) survey in star-forming regions, covering high-mass, intermediate-mass, and low-mass young stellar objects. All the observations were made using the SIRPOL imaging polarimeter on the Infrared Survey Facility 1.4 m telescope at the South African Astronomical Observatory. We present the polarization properties of ten sub-regions in six star-forming regions. The polarization patterns, extents, and maximum degrees of linear and circular polarizations are used to determine the prevalence and origin of CP in the star-forming regions. Our results show that the CP pattern is quadrupolar in general, the CP regions are extensive, up to 0.65 pc, the CP degrees are high, up to 20 %, and the CP degrees decrease systematically from high- to low-mass young stellar objects. The results are consistent with dichroic extinction mechanisms generating the high degrees of CP in star forming regions.
To appear in the Astrophysical Journal Letters
References in corpus (2)
Cited by in corpus (6)
- CO Infrared Phonon Modes in Interstellar Ice Mixtures
- High circular polarization of near infrared light induced by micron-size dust grains
- On Far-Infrared and Submm Circular Polarization
- Generation of high circular polarization of interstellar Lyman radiation triggering biological homochirality
- The magnetic fields of the dusty nuclei and molecular outflows of Arp 220
- Resolution and calibration effects in high contrast polarimetric imaging of circumstellar scattering regions