Hostname: page-component-8448b6f56d-42gr6 Total loading time: 0 Render date: 2024-04-24T01:46:57.737Z Has data issue: false hasContentIssue false

21 cm Line Study of Large Scale Density Fluctuations in the Taurus Molecular Complex

Published online by Cambridge University Press:  04 August 2017

W.L.H. Shuter
Affiliation:
University of British Columbia, Vancouver, Canada
R. L. Dickman
Affiliation:
University of Massachusetts, Amherst, USA
C. Klatt
Affiliation:
University of British Columbia, Vancouver, Canada

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

21-cm spectra on a 41 × 31 grid, centered at 1950: RA 04h30m; DEC 27d00m, at points separated by a true angle of 0.25 degrees, were observed using the Arecibo telescope in October 1985. The identical grid had previously been observed in 13CO by Kleiner and Dickman (1984) with the FCRAO mm wave telescope. In this preliminary analysis we determined autocorrelation functions and power spectra for 21-cm self absorption “intensities”, for a cross passing through the central point. Both arms of the cross, aligned parallel to RA and DEC, show a power spectral peak at a frequency of 0.312 reciprocal degrees, corresponding to a period of 3.2 degrees on the sky. Assuming that the Taurus complex is at a distance of 140 pc, this corresponds to a correlation length of 7.8 pc, which is about a factor of two smaller than the value of 14 pc found by Kleiner and Dickman for 13CO.

Type
I. Star Forming Processes in the Solar Neighborhood
Copyright
Copyright © Reidel 1987 

References

Baker, P.L.: 1973, Astr. and Astrophys. 23, 81.Google Scholar
Kleiner, S.C., and Dickman, R.L.: 1984, Astrophys. J. 286, 255.Google Scholar
Levinson, F.H., and Brown, R.L.: 1980, Astrophys. J. 242, 416.Google Scholar
Wilson, T.L., and Minn, Y.K.: 1977, Astr. and Astrophys. 54, 933.Google Scholar