J=1-0 transitions of argonium (ArH^+^) : J/ApJ/820/L26


Authors : Bizzocchi L. orcid , Dore L., Degli Esposti C. (hide) , Dore L., Degli Esposti C. et..al

Bibcode : 2016ApJ...820L..26B (ADS) (Simbad) (Objects) (hide)

CDS Keywords : Atomic physics
UAT : Atomic physics

Observation (OC)

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Inserted into VizieR : 06-Jul-2016
Last modification : 23-Jan-2017

First laboratory measurement of the J=1-0 transitions of ^36^ArH^+^ and ^38^ArH^+^ new, improved rest frequencies for astronomical searches. (2016)

Keywords : ISM molecules; methods: laboratory: molecular; molecular data; techniques: spectroscopic

Abstract:The recent detections of ^36^ArH^+^ and ^38^ArH^+^ in the interstellar medium have triggered interest in argonium. This molecular cation has proved to be widespread in our galaxy in the diffuse medium and may serve as a very specific tracer of atomic gas and as a proxy for the cosmic-ray ionization rate. Pure rotational transitions of the two isotopologues detected in the ISM have never been recorded in the laboratory until this work. Here, we report on the first detection of the J=1<-0 transition of both ^36^ArH^+^ and ^38^ArH^+^ produced in a low-pressure glow discharge. All of the rotational and ro-vibrational transition frequencies available have been analyzed in global multi-isotopologues fit to give a comprehensive set of isotopic ...(more)
Abstract: (hide)
The J=1-0 pure rotational transition of the argonium ion was observed in absorption with a frequency-modulated millimeter-wave spectrometer equipped with a negative glow discharge cell. See section 2 for the experimental details.

  • J/ApJ/783/L5 : Ro-vibration transitions of the protonated argon ion

                
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