Aims: We describe the assignment of a previously unidentified interstellar absorption line to ArH+ and discuss its relevance in the context of hydride absorption in diffuse gas with a low H2 fraction. The confidence of the assignment to ArH+ is discussed, and the column densities are determined toward several lines of sight. The results are then discussed in the framework of chemical models, with the aim of explaining the observed column densities. Methods: We fitted the spectral lines with multiple velocity components, and determined column densities from the line-to-continuum ratio. The column densities of ArH+ were compared to those of other species, tracing interstellar medium (ISM) components with different H2 abundances. We constructe...
The discovery of ArH+ in the interstellar medium has shown that noble gas chemistry may be of more c...
The first identification of the argonium ion (ArH+) toward the Crab Nebula supernova remnant was pro...
20th European Conference on the Dynamics of Molecular Systems (MOLEC 2014). Gothenburg, Sweden, Aug...
Aims: We describe the assignment of a previously unidentified interstellar absorption line to ArH+ a...
ArH+ is isoelectronic with HCl. The J = 1-0 and 2-1 transitions of 36ArH+ near 617.5 and 1234.6 GHz,...
ArH+ is isoelectronic with HCl. The J = 1−0 and 2−1 transitions of 36ArH+ near 617.5 and 1234.6 GHz,...
Context. Argonium has recently been detected as a ubiquitous molecule in our Galaxy. Model...
Context. Along several sight lines within the Milky Way ArH+ has been ubiquitously detected with onl...
ArH$^+$ is isoelectronic with HCl. The $J = 1 - 0$ and $2 - 1$ transitions of $^{36}$ArH$^+$ near 61...
Context. Argonium has recently been detected as a ubiquitous molecule in our Galaxy. Model calculati...
Context. Argonium has recently been detected as a ubiquitous molecule in our Galaxy. Model calculati...
Ubiquitous argonium (ArH+) in the diffuse interstellar medium: A molecular tracer of almost purely a...
Abstract There is a robust polyatomic chemistry in diffuse, partially molecular interstellar gas tha...
International audienceWe have complemented existing observations of H I absorption with new observat...
We have complemented existing observations of H I absorption with new observations of HCO+, C2H, HCN...
The discovery of ArH+ in the interstellar medium has shown that noble gas chemistry may be of more c...
The first identification of the argonium ion (ArH+) toward the Crab Nebula supernova remnant was pro...
20th European Conference on the Dynamics of Molecular Systems (MOLEC 2014). Gothenburg, Sweden, Aug...
Aims: We describe the assignment of a previously unidentified interstellar absorption line to ArH+ a...
ArH+ is isoelectronic with HCl. The J = 1-0 and 2-1 transitions of 36ArH+ near 617.5 and 1234.6 GHz,...
ArH+ is isoelectronic with HCl. The J = 1−0 and 2−1 transitions of 36ArH+ near 617.5 and 1234.6 GHz,...
Context. Argonium has recently been detected as a ubiquitous molecule in our Galaxy. Model...
Context. Along several sight lines within the Milky Way ArH+ has been ubiquitously detected with onl...
ArH$^+$ is isoelectronic with HCl. The $J = 1 - 0$ and $2 - 1$ transitions of $^{36}$ArH$^+$ near 61...
Context. Argonium has recently been detected as a ubiquitous molecule in our Galaxy. Model calculati...
Context. Argonium has recently been detected as a ubiquitous molecule in our Galaxy. Model calculati...
Ubiquitous argonium (ArH+) in the diffuse interstellar medium: A molecular tracer of almost purely a...
Abstract There is a robust polyatomic chemistry in diffuse, partially molecular interstellar gas tha...
International audienceWe have complemented existing observations of H I absorption with new observat...
We have complemented existing observations of H I absorption with new observations of HCO+, C2H, HCN...
The discovery of ArH+ in the interstellar medium has shown that noble gas chemistry may be of more c...
The first identification of the argonium ion (ArH+) toward the Crab Nebula supernova remnant was pro...
20th European Conference on the Dynamics of Molecular Systems (MOLEC 2014). Gothenburg, Sweden, Aug...