A VLA search for young protostars embedded in dense cores
arXiv:astro-ph/0611290 · doi:10.1051/0004-6361:20066387
Abstract
Four dense cores, L1582A, L1689A, B133 and B68, classified as prestellar in terms of the absence of detectable NIR emission, are observed at radio wavelengths to investigate whether they nurture very young protostars. No definite young protostars were discovered in any of the four cores observed. A few radio sources were discovered close to the observed cores, but these are most likely extragalactic sources or YSOs unrelated to the cores observed. In L1582A we discovered a weak radio source near the centre of the core with radio characteristics and offset from the peak of the submillimeter emission similar to that of the newly discovered protostar in the core L1014, indicating a possible protostellar nature for this source. This needs to be confirmed with near- and/or mid-infrared observations (e.g. with Spitzer). Hence based on the current observations we are unable to confirm unequivocally that L1582A is starless. In L1689A a possible 4.5-sigma radio source was discovered at the centre of the core, but needs to be confirmed with future observations. In B133 a weak radio source, possibly a protostar, was discovered at the edge of the core on a local peak of the core submm emission, but no source was detected at the centre of the core. Thus, B133 is probably starless, but may have a protostar at its edge. In B68 no radio sources were discovered inside or at the edge of the core, and thus B68 is indeed starless. Four more radio sources with spectral indices characteristic of young protostars were discovered outside the cores but within the extended clouds in which these cores reside. Conclusions: We conclude that the number of cores misclassified as prestellar is probably very small and does not significantly alter the estimated lifetime of the prestellar phase.
Accepted by A&A
References in corpus (13)
- The Milky Way in Molecular Clouds: A New Complete CO Survey
- The initial conditions of isolated star formation - VI. SCUBA mapping of prestellar cores
- A "Starless" Core that Isn't: Detection of a Source in the L1014 Dense Core with the Spitzer Space Telescope
- The Spitzer c2d Survey of Nearby Dense Cores: II: Discovery of a Low Luminosity Object in the "Evolved Starless Core" L1521F
- The initial conditions of isolated star formation. V: ISOPHOT imaging and the temperature and energy balance of pre-stellar cores
- Discovery of a Low Mass Bipolar Molecular Outflow from L1014-IRS with the Submillimeter Array
- A SCUBA survey of L1689 - The dog that didn't bark
- Deep Near-Infrared Observations of L1014: Revealing the nature of the core and its embedded source
- VLA 3.5 cm continuum sources in the Serpens cloud core
- How to identify the youngest protostars
- Limits on Radio Continuum Emission from a Sample of Candidate Contracting Starless Cores
- Why do starless cores appear more flattened than protostellar cores?
- Observational characteristics of dense cores with deeply embedded young protostars
Cited by in corpus (4)
- The Detection and Characterization of cm Radio Continuum Emission from the Low-mass Protostar L1014-IRS
- AMI observations of Lynds Dark Nebulae: further evidence for anomalous cm-wave emission
- Radio continuum imaging of the R CrA star-forming region with the ATCA
- AMI Large Array radio continuum observations of Spitzer c2d small clouds and cores