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Dense Molecular Clumps with Large Blue Asymmetries: Evidence for Collapse

Astrophysics of Galaxies 2026-02-17 v1

Abstract

An analysis of the Millimetre Astronomy Legacy Team 90 GHz (MALT90) survey has produced a sample of 27 candidate dense molecular clumps with large collapse motions, as revealed by large ``blue'' asymmetrical line profiles of the optically thick \hcop\, line. %with respect to the optically thin \nthp\, line. New, more sensitive molecular line observations of this sample, conducted with the Mopra 22-m telescope, confirm the blue asymmetries in the \hcop\, line profiles, with large, positive values of the asymmetry parameter AA (AˉHCO+=0.69±0.01\bar{A}_{HCO^+} = 0.69\pm0.01), and positive, but smaller asymmetries in the \hcn\, and \hnc\, lines: (AˉHCN=0.35±0.01\bar{A}_{HCN} = 0.35\pm0.01 and AˉHNC=0.28±0.01\bar{A}_{HNC} = 0.28\pm0.01), as expected for a less optically thick tracer in collapsing clumps. The small, positive mean asymmetry parameters for \cch\, and \htcop, AˉC2H=0.15±0.02\bar{A}_{C_2H} = 0.15\pm0.02 and AˉH13CO+=0.18±0.03\bar{A}_{H^{13}CO^+} = 0.18\pm0.03, likely indicate slightly optically thick emission for at least some clumps. The hyperfine ratios for \nthp\, are in their optically thin, LTE, values, but for \hcn\ they are not; the F=11F=1 \to 1 hyperfine line shows abnormally weak intensities. A simple two-component model shows that self-absorption of the background F=11F = 1 \to 1 hyperfine line by the main F=21F = 2 \to 1 hyperfine line of a cold, foreground, redshifted cloud can reproduce the observed \hcn\, hyperfine intensities and match the \hcn\, and \hcop\, line profiles. All of these results are consistent with self-absorption of the optically thick lines on the red side of the profile, as expected for collapsing clumps. A simple two-cloud model suggests that this sample represents dense clumps with extreme collapse velocities, Vinf2.4V_{inf} \sim 2.4 \kms.

Keywords

Cite

@article{arxiv.2602.13992,
  title  = {Dense Molecular Clumps with Large Blue Asymmetries: Evidence for Collapse},
  author = {James M. Jackson and J. Scott Whitaker and Edward Chambers and Robert Simon and Cristian Guevara and David Allingham and Philippa Patterson and Nicholas Killerby-Smith and Jacob Askew and Patricio Sanhueza and Ian W. Stephens and Anika Shmiedeke and Jacob Askew and Robert Loughnane},
  journal= {arXiv preprint arXiv:2602.13992},
  year   = {2026}
}