The immediate environment of the Class 0 protostar VLA1623, on scales of ~50-100 AU, observed at millimetre and centimetre wavelengths
D. Ward-Thompson (1), J.M. Kirk (1), J.S. Greaves (2), P. Andr\'e (3), ((1) Cardiff University, Wales, (2) St Andrews University, Scotland, (3) CEA, Saclay, France)

TL;DR
This study uses high-resolution radio observations to analyze the immediate environment of the Class 0 protostar VLA1623, revealing two components with detailed size, mass, and spectral properties, and discussing their possible nature.
Contribution
First high-resolution millimetre and centimetre observations of VLA1623 revealing its binary components and their physical characteristics.
Findings
Detected two sources VLA1623A & B with ~170AU separation.
Estimated disc mass of VLA1623A <0.13 solar masses.
Spectral index suggests optically thick free-free emission or grain growth.
Abstract
We present high angular resolution observations, taken with the Very Large Array (VLA) and Multiple Element Radio Linked Interferometer Network (MERLIN) radio telescopes, at 7mm and 4.4cm respectively, of the prototype Class 0 protostar VLA1623. At 7mm we detect two sources (VLA1623A & B) coincident with the two previously detected components at the centre of this system. The separation between the two is 1.2arcsec, or ~170AU at an assumed distance of 139pc. The upper limit to the size of the source coincident with each component of VLA1623 is ~0.7arcsec, in agreement with previous findings. This corresponds to a diameter of ~100AU at an assumed distance of 139pc. Both components show the same general trend in their broadband continuum spectra, of a steeper dust continuum spectrum shortward of 7mm and a flatter spectrum longward of this. We estimate an upper limit to the VLA1623A disc…
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