English

Infrared spectroscopy of radioactive hydrogen chloride H$^{36}\!$Cl

Chemical Physics 2021-11-24 v1

Abstract

We present the first report of optical absorption spectroscopy of H36 ⁣^{36}\!Cl, a radioactive isotopologue of hydrogen chloride. We used Fourier-transform infrared spectroscopy to determine the line center wavenumbers of the fundamental rovibrational band lines P(10)-R(10) and the first overtone band lines P(1)-R(7) with total uncertainty of less than 0.0018 cm1^{-1} (60 MHz) and 0.007 cm1^{-1} (0.2 GHz), respectively, at 68 % confidence level. We also performed a rotational analysis on the bands to determine the related molecular constants. We further compared the linewidths and relative intensities of the lines to those of the stable isotopologues H35 ⁣^{35}\!Cl and H37 ⁣^{37}\!Cl. The new spectroscopic information assists in developing optical instrumentation for the detection of H36 ⁣^{36}\!Cl.

Keywords

Cite

@article{arxiv.2108.13031,
  title  = {Infrared spectroscopy of radioactive hydrogen chloride H$^{36}\!$Cl},
  author = {Santeri Larnimaa and Markku Vainio and Ville Ulvila},
  journal= {arXiv preprint arXiv:2108.13031},
  year   = {2021}
}

Comments

Supplementary information can be found at the end of the file (pages 17-24)