English

Revealing a Centrally Condensed Structure in OMC-3/MMS 3 with ALMA High Resolution Observations

Astrophysics of Galaxies 2021-04-08 v1 Solar and Stellar Astrophysics

Abstract

Using the Atacama Large Millimeter/submillimeter Array (ALMA), we investigated a peculiar millimeter source MMS 3 located in the Orion Molecular Cloud 3 (OMC-3) region in the 1.3 mm continuum, CO (JJ=2-1), SiO (JJ=5-4), C18^{18}O (JJ=2-1), N2_2D+^+ (JJ=3-2), and DCN (JJ=3-2) emissions. With the ALMA high angular resolution (\sim0''.2), we detected a very compact and highly centrally condensed continuum emission with a size of 0''.45 ×\times 0''.32 (P.A.=0.22^\circ). The peak position coincides with the locations of previously reported SpitzerSpitzer/IRAC and X-ray sources within their positional uncertainties. We also detected an envelope with a diameter of \sim6800 au (P.A.=75^\circ) in the C18^{18}O (JJ=2-1) emission. Moreover, a bipolar outflow was detected in the CO (JJ=2-1) emission for the first time. The outflow elongates roughly perpendicular to the long axis of the envelope detected in the C18^{18}O (JJ=2-1) emission. Compact high-velocity CO gas in the (red-shifted) velocity range of 22-30 km s1^{-1}, presumably tracing a jet, was detected near the 1.3 mm continuum peak. A compact and faint red-shifted SiO emission was marginally detected on the CO outflow lobe. The physical quantities of the outflow in MMS 3 are relatively smaller than those in other sources in the OMC-3 region. The centrally condensed object associated with the near-infrared and X-ray sources, the flattened envelope, and the faint outflow indicate that MMS 3 harbors a low mass protostar with an age of \sim103^3 yr.

Keywords

Cite

@article{arxiv.2102.07793,
  title  = {Revealing a Centrally Condensed Structure in OMC-3/MMS 3 with ALMA High Resolution Observations},
  author = {Kaho Morii and Satoko Takahashi and Masahiro N. Machida},
  journal= {arXiv preprint arXiv:2102.07793},
  year   = {2021}
}

Comments

15 pages, 6 figures, 4 tables, accepted for publication in ApJ