Herschel observations of interstellar chloronium. II - Detections toward G29.96-0.02, W49N, W51, and W3(OH), and determinations of the ortho-to-para and $^{35}$Cl/$^{37}$Cl isotopic ratios
David A. Neufeld (JHU), John H. Black (Chalmers), Maryvonne Gerin, (Obs. de Paris), Javier R. Goicoechea (CSIC), Paul F. Goldsmith (JPL), Cecile, Gry (Aix-Marseille Univ.), Harshal Gupta (Caltech), Eric Herbst (UVa), Nick, Indriolo (Michigan), Dariusz Lis (Obs. de Paris

TL;DR
This study reports Herschel observations detecting interstellar chloronium ions toward four sources, analyzing their isotopic and spin ratios, and comparing observed abundances with astrochemical models, revealing higher-than-predicted chloronium levels.
Contribution
First detection of chloronium ions in multiple sources with detailed isotopic and spin ratio analysis, challenging existing astrochemical models.
Findings
Chloronium abundances exceed model predictions by up to five times.
Isotopic ratios align with solar system values, supporting current isotopic understanding.
Ortho-to-para ratios are consistent with statistical weights, indicating thermal equilibrium.
Abstract
We report additional detections of the chloronium molecular ion, HCl, toward four bright submillimeter continuum sources: G29.96, W49N, W51, and W3(OH). With the use of the HIFI instrument on the Herschel Space Observatory, we observed the transition of ortho-HCl at 781.627 GHz in absorption toward all four sources. Much of the detected absorption arises in diffuse foreground clouds that are unassociated with the background continuum sources and in which our best estimates of the ratio lie in the range . These chloronium abundances relative to atomic hydrogen can exceed the predictions of current astrochemical models by up to a factor of 5. Toward W49N, we have also detected the transition of ortho-HCl at 780.053 GHz and the transition of…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Atmospheric Ozone and Climate · Molecular Spectroscopy and Structure
