Herschel-HIFI observations of high-J CO and isotopologues in star-forming regions: from low- to high-mass
I. San Jose-Garcia, J. C. Mottram, L. E. Kristensen, E. F. van, Dishoeck, U. A. Yildiz, F. F. S. van der Tak, F. Herpin, R. Visser, C., McCoey, F. Wyrowski, J. Braine, D. Johnstone

TL;DR
This study uses Herschel-HIFI and JCMT observations to analyze high-J CO lines in 51 star-forming regions, revealing a strong correlation between CO line luminosities and bolometric luminosity across a wide mass range, indicating similar physical processes.
Contribution
It provides a comprehensive analysis of CO emission in protostars from low to high mass, demonstrating universal relations and kinematic features across different luminosities.
Findings
Strong linear correlation between CO line and bolometric luminosities.
Line profiles show broad and narrow components linked to outflows and envelopes.
Physical processes are similar across the studied luminosity range.
Abstract
Context; Our understanding of the star formation process has traditionally been confined to certain mass or luminosity boundaries because most studies focus only on low-, intermediate- or high-mass star-forming regions. As part of the "Water In Star-forming regions with Herschel" (WISH) key program, water and other important molecules, such as CO and OH, have been observed in 51 embedded young stellar objects (YSOs). The studied sample covers a range of luminosities from <1 to >10^5 L_sol. Aims; We analyse the CO line emission towards a large sample of protostars in terms of both line intensities and profiles. Methods; Herschel-HIFI spectra of the 12CO 10-9, 13CO 10-9 and C18O 5-4, 9-8 and 10-9 lines are analysed for a sample of 51 YSOs. In addition, JCMT spectra of 12CO 3-2 and C18O 3-2 extend this analysis to cooler gas components. Results; All observed CO and isotopologue spectra…
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