Articles

Dissociative recombination of rotationally cold ArH⁺

Kálosi, Ábel; Grieser, Manfred; Isberner, Leonard W.; Neufeld, David A.; Paul, Daniel; Savin, Daniel Wolf; Schippers, Stefan; Schmidt, Viviane C.; Wolf, Andreas; Wolfire, Mark G.; Novotný, Oldřich

We have experimentally studied dissociative recombination (DR) of electronically and vibrationally relaxed ArH⁺ in its lowest rotational levels, using an electron-ion merged-beams setup at the Cryogenic Storage Ring. We report measurements for the merged-beams rate coefficient of ArH⁺ and compare it to published experimental and theoretical results. In addition, by measuring the kinetic energy released to the DR fragments, we have determined the internal state of the DR products after dissociation. At low collision energies, we find that the atomic products are in their respective ground states, which are only accessible via nonadiabatic couplings to neutral Rydberg states. Published theoretical results for ArH⁺ have not included this DR pathway. From our measurements, we have also derived a kinetic temperature rate coefficient for use in astrochemical models.

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Also Published In

Title
Physical Review A
DOI
https://doi.org/10.1103/PhysRevA.110.022816

More About This Work

Academic Units
Astrophysics Laboratory
Published Here
March 12, 2026