Comparative study of CH+ and SH+ absorption lines observed towards distant star-forming regions
Benjamin Godard, E. Falgarone (LERMA), M. Gerin (LERMA), D.C. Lis, (CALTECH), M. De Luca (LERMA), J.H. Black, J. R. Goicoechea, J. Cernicharo,, D.A. Neufeld, K. M. Menten (MPIFR), M. Emprechtinger

TL;DR
This study compares absorption lines of CH+, 13CH+, and SH+ molecules across multiple distant star-forming regions to understand their chemical and dynamical properties in the diffuse interstellar medium.
Contribution
It provides the first detailed comparison of these molecular ions' velocity structures and linewidths across various Galactic sight lines, revealing their similar kinematic behaviors.
Findings
SH+ is detected along all sight lines.
Linewidths of CH+, SH+, and 13CH+ are statistically similar.
Absorption profiles are broader than most species in diffuse interstellar medium.
Abstract
Aims. The HIFI instrument onboard Herschel has allowed high spectral resolution and sensitive observations of ground-state transi- tions of three molecular ions: the methylidyne cation CH+, its isotopologue 13CH+, and sulfanylium SH+. Because of their unique chemical properties, a comparative analysis of these cations provides essential clues to the link between the chemistry and dynamics of the diffuse interstellar medium. Methods. The CH+, 13CH+, and SH+ lines are observed in absorption towards the distant high-mass star-forming regions (SFRs) DR21(OH), G34.3+0.1, W31C, W33A, W49N, and W51, and towards two sources close to the Galactic centre, SgrB2(N) and SgrA*+50. All sight lines sample the diffuse interstellar matter along pathlengths of several kiloparsecs across the Galactic Plane. In order to compare the velocity structure of each species, the observed line profiles were…
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