Methyl chloride (CH3Cl) plays an important role in the catalytic destruction of ozone in the lower stratosphere. One of the methods used to determine the concentration of this gas in the atmosphere is the study of the 3.4 µm region by infrared spectroscopy, and specifically of the QQ sub branches of the ν1 band. For this, spectroscopic parameters of very high quality are needed. So we studied at the laboratory, the spectroscopy of CH3Cl in this spectral region. High resolution spectra were recorded using a Fourier transform spectrometer. Positions and intensities were measured from spectra of pure CH3Cl at low pressure. These measurements enabled fitting an effective Hamiltonian including six interacting states and the dipole moment matrix....
Methyl bromine is of interest for atmospheric applications, since this molecule is directly involved...
Les observations atmosphériques des espèces bromées montrent que le brome est directement impliqué d...
International audienceUsing FT spectra (Bruker IFS 120, unapodized FWHM resolution ̴ 0.001 cmˉ¹) of ...
Methyl chloride (CH3Cl) plays an important role in the catalytic destruction of ozone in the lower s...
Author Institution: Universite Pierre et Marie Curie-Paris 6; CNRS; Laboratoire; de Dynamique, Inter...
International audienceMethyl chloride is of interest for atmospheric applications, since this molecu...
La molécule de CH₃I est un gaz à intérêt atmosphérique qui contribue à destruction de la couche d’oz...
International audienceMethyl chloride (CH3Cl) is one of the most abundant chlorine-containing molecu...
The work presented in this manuscript is devoted to the study of the effects of collisions in the in...
International audienceLine-mixing effects have been studied in the ν1 QQK (K from 0 to 10) sub branc...
International audienceRovibrational absorption spectra of methyl chloride in the spectral region bet...
Methyl chloride (CH3Cl) is one of the most abundant chlorine-containing molecules in the atmosphere....
Les travaux présentés dans ce manuscrit sont consacrés à l’étude des effets des collisions dans les ...
Author Institution: Universite Pierre-et-Marie-Curie-Paris 6, Laboratoire de Dynamique, Interactions...
Methyl bromine is of interest for atmospheric applications, since this molecule is directly involved...
Les observations atmosphériques des espèces bromées montrent que le brome est directement impliqué d...
International audienceUsing FT spectra (Bruker IFS 120, unapodized FWHM resolution ̴ 0.001 cmˉ¹) of ...
Methyl chloride (CH3Cl) plays an important role in the catalytic destruction of ozone in the lower s...
Author Institution: Universite Pierre et Marie Curie-Paris 6; CNRS; Laboratoire; de Dynamique, Inter...
International audienceMethyl chloride is of interest for atmospheric applications, since this molecu...
La molécule de CH₃I est un gaz à intérêt atmosphérique qui contribue à destruction de la couche d’oz...
International audienceMethyl chloride (CH3Cl) is one of the most abundant chlorine-containing molecu...
The work presented in this manuscript is devoted to the study of the effects of collisions in the in...
International audienceLine-mixing effects have been studied in the ν1 QQK (K from 0 to 10) sub branc...
International audienceRovibrational absorption spectra of methyl chloride in the spectral region bet...
Methyl chloride (CH3Cl) is one of the most abundant chlorine-containing molecules in the atmosphere....
Les travaux présentés dans ce manuscrit sont consacrés à l’étude des effets des collisions dans les ...
Author Institution: Universite Pierre-et-Marie-Curie-Paris 6, Laboratoire de Dynamique, Interactions...
Methyl bromine is of interest for atmospheric applications, since this molecule is directly involved...
Les observations atmosphériques des espèces bromées montrent que le brome est directement impliqué d...
International audienceUsing FT spectra (Bruker IFS 120, unapodized FWHM resolution ̴ 0.001 cmˉ¹) of ...