A Herschel study of the high-mass protostar IRAS20126+4104
arXiv:2301.13135 · doi:10.1051/0004-6361/202245175
Abstract
We performed Herschel observations of the continuum and line emission from the high-mass star-forming region IRAS20126+4104, which hosts a well-studied B-type (proto)star powering a bipolar outflow and is associated with a Keplerian circumstellar disk. The continuum images at six wavelengths allowed us to derive an accurate estimate of the bolometric luminosity and mass of the molecular clump enshrouding the disk. The same region has been mapped in 12 rotational transitions of carbon monoxide, which were used in synergy with the continuum data to determine the temperature and density distribution inside the clump and improve upon the mass estimate. The maps of two fine structure oxygen far-IR lines were used to estimate the volume density of the shocked region at the surface of the southern lobe of the outflow and the mass-loss rate. Our findings lend further support to the scenario previously proposed by various authors, confirming that at the origin of the bolometric luminosity and bipolar outflow from IRAS20126+4104 is a B-type star located at the centre of the Keplerian disk.
To be published on Astronomy and Astrophysics
References in corpus (9)
- An extraordinary outburst in the massive protostellar system NGC6334I-MM1: quadrupling of the millimeter continuum
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- Spitzer IRAC and MIPS Imaging of Clusters and Outflows in 9 High-mass Star Forming Regions
- Outflows, infall and evolution of a sample of embedded low-mass protostars. The William Herschel Line Legacy (WILL) survey
- Resolved 24.5 micron emission from massive young stellar objects
- [OI]63micron jets in class 0 sources detected by Herschel
- The Complex Mid-Infrared Structure at the Heart of IRAS 20126+4104
- The SOUL view of IRAS20126+4104. Kinematics and variability of the H jet from a massive protostar
- Submillimeter Observations of The Isolated Massive Dense Clump IRAS 20126+4104