New accurate measurement of 36ArH+ and 38ArH+ ro-vibrational transitions by high resolution IR absorption spectroscopy
arXiv:1401.7448 · doi:10.1088/2041-8205/783/1/L5
Abstract
The protonated Argon ion, ArH, has been identified recently in the Crab Nebula (Barlow et al. 2013) from Herschel spectra. Given the atmospheric opacity at the frequency of its =1-0 and =2-1 rotational transitions (617.5 and 1234.6 GHz, respectively), and the current lack of appropriate space observatories after the recent end of the Herschel mission, future studies on this molecule will rely on mid-infrared observations. We report on accurate wavenumber measurements of ArH and ArH rotation-vibration transitions in the =1-0 band in the range 4.1-3.7 m (2450-2715 cm). The wavenumbers of the (0) transitions of the =1-0 band are 2612.501350.00033 and 2610.701770.00042 cm () for ArH and ArH, respectively. The calculated opacity for a gas thermalized at a temperature of 100 K and a linewidth of 1 km.s of the (0) line is (ArH). For column densities of ArH larger than cm, significant absorption by the (0) line can be expected against bright mid-IR sources.
References in corpus (2)
Cited by in corpus (5)
- Ubiquitous argonium (ArH) in the diffuse interstellar medium -- a molecular tracer of almost purely atomic gas
- ArH2+ and NeH2+ as Global Minima in the Ar+/Ne+ + H2 Reactions: Energetic, Spectroscopic, and Structural Data
- First laboratory detection of vibration-rotation transitions of CH and CH and improved measurement of their rotational transition frequencies
- Accurate frequency determination of vibration-rotation and rotational transitions of SiH+
- The high resolution infrared spectrum of HCl