Massive Star Outflows
arXiv:astro-ph/0506024 · doi:10.1017/S174392130500459X
Abstract
Molecular outflows in the form of wide-angle winds and/or well-collimated jets are associated with young stellar objects of all luminosities. Independent studies have established that the mass outflow rate is proportional to L_bol^0.6 for L_bol = 0.3 to 10^5 L_sun, suggesting that there is a strong link between accretion and outflow for a wide range of source luminosity and there is reasonable evidence that accretion-related processes are responsible for generating massive molecular flows from protostars up to spectral type B0. Beyond L_bol ~ 10^4 L_sun, O stars generate powerful wide-angle, ionized winds that can dramatically affect outflow morphology and even call into question the relationship between outflow and accretion. Recently Beuther & Shepherd (2005) proposed an evolutionary scenario in which massive protostellar flows (up to early B spectral type) begin collimated. Once the star reaches the Main Sequence, ionizing radiation may affect the balance between magnetic and plasma pressure, inducing changes in the flow morphology and energetics. Here I review the properties of outflows from young OB stars, discuss implications and observational tests of this proposed evolutionary scenario, and examine differences between low-mass and massive star formation.
To be published in the IAU Symposium 227 conference proceedings: Massive Star Birth: A Crossroads of Astrophysics See http://www.aoc.nrao.edu/~dshepher/science.shtml for a reprint
Cited by in corpus (12)
- Theory of Star Formation
- Toward Understanding Massive Star Formation
- A near-IR spectroscopic survey of massive jets towards EGOs
- Outflows from the high-mass protostars NGC 7538 IRS1/2 observed with bispectrum speckle interferometry -- Signatures of flow precession
- On the nature of outflows in intermediate-mass protostars: a case study of IRAS 20050+2720
- Who Is Eating the Outflow?: High-Angular Resolution Study of an Intermediate-Mass Protostar in L1206
- The Circumstellar Environment of High-Mass Protostellar Objects: IV. C17O Observations and Depletion
- Infrared and radio study of star forming regions associated with IRAS 19111+1048 and IRAS 19110+1045
- The SiO outflow from IRAS 17233-3603 at high resolution
- Multiple Sources toward the High-mass Young Star S140 IRS1
- Dense gas and exciting sources of the molecular outflow in the AFGL 437 star-forming region
- The young B-star quintuple system HD 155448