Dense Molecular Clumps with Large Blue Asymmetries: Evidence for Collapse

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Hauptverfasser: Jackson, James M., Whitaker, J. Scott, Chambers, Edward, Simon, Robert, Guevara, Cristian, Allingham, David, Patterson, Philippa, Killerby-Smith, Nicholas, Askew, Jacob, Sanhueza, Patricio, Stephens, Ian W., Shmiedeke, Anika, Loughnane, Robert
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Veröffentlicht: 2026
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author Jackson, James M.
Whitaker, J. Scott
Chambers, Edward
Simon, Robert
Guevara, Cristian
Allingham, David
Patterson, Philippa
Killerby-Smith, Nicholas
Askew, Jacob
Sanhueza, Patricio
Stephens, Ian W.
Shmiedeke, Anika
Askew, Jacob
Loughnane, Robert
author_facet Jackson, James M.
Whitaker, J. Scott
Chambers, Edward
Simon, Robert
Guevara, Cristian
Allingham, David
Patterson, Philippa
Killerby-Smith, Nicholas
Askew, Jacob
Sanhueza, Patricio
Stephens, Ian W.
Shmiedeke, Anika
Askew, Jacob
Loughnane, Robert
contents 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 $A$ ($\bar{A}_{HCO^+} = 0.69\pm0.01$), and positive, but smaller asymmetries in the \hcn\, and \hnc\, lines: ($\bar{A}_{HCN} = 0.35\pm0.01$ and $\bar{A}_{HNC} = 0.28\pm0.01$), as expected for a less optically thick tracer in collapsing clumps. The small, positive mean asymmetry parameters for \cch\, and \htcop, $\bar{A}_{C_2H} = 0.15\pm0.02$ and $\bar{A}_{H^{13}CO^+} = 0.18\pm0.03$, 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 $F=1 \to 1$ hyperfine line shows abnormally weak intensities. A simple two-component model shows that self-absorption of the background $F = 1 \to 1$ hyperfine line by the main $F = 2 \to 1$ 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, $V_{inf} \sim 2.4$ \kms.
format Preprint
id arxiv_https___arxiv_org_abs_2602_13992
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Dense Molecular Clumps with Large Blue Asymmetries: Evidence for Collapse
Jackson, James M.
Whitaker, J. Scott
Chambers, Edward
Simon, Robert
Guevara, Cristian
Allingham, David
Patterson, Philippa
Killerby-Smith, Nicholas
Askew, Jacob
Sanhueza, Patricio
Stephens, Ian W.
Shmiedeke, Anika
Askew, Jacob
Loughnane, Robert
Astrophysics of Galaxies
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 $A$ ($\bar{A}_{HCO^+} = 0.69\pm0.01$), and positive, but smaller asymmetries in the \hcn\, and \hnc\, lines: ($\bar{A}_{HCN} = 0.35\pm0.01$ and $\bar{A}_{HNC} = 0.28\pm0.01$), as expected for a less optically thick tracer in collapsing clumps. The small, positive mean asymmetry parameters for \cch\, and \htcop, $\bar{A}_{C_2H} = 0.15\pm0.02$ and $\bar{A}_{H^{13}CO^+} = 0.18\pm0.03$, 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 $F=1 \to 1$ hyperfine line shows abnormally weak intensities. A simple two-component model shows that self-absorption of the background $F = 1 \to 1$ hyperfine line by the main $F = 2 \to 1$ 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, $V_{inf} \sim 2.4$ \kms.
title Dense Molecular Clumps with Large Blue Asymmetries: Evidence for Collapse
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2602.13992