This work describes the theoretical basis and implementation of the measurement of vibrational (Tvib) and rotational (Trot) temperatures in CH4 by fitting spontaneous Raman scattering spectra in the Pentad region. This method could be applied for thermal equilibrium temperature measurements applications, e.g. in combustion, or vibrational-rotational non-equilibrium applications, such as in plasma chemistry. The method of calculating these temperatures is validated against known temperature thermal equilibrium spectra up to 860 K from published data, giving an estimated relative error of 10%. This demonstrates that both the calculated stick spectrum and the algorithm to determine Tvib and Trot for CH4 is robust to 860 K, but we expect it is ...
Vibrational excitation of methane is believed to promote chemistry and improve product selectivity, ...
The gas temperature in non-equilibrium plasmas is often obtained from the plasma-induced emission by...
The pump-probe technique for investigating vibrationally excited states via high resolution Raman sp...
This work describes the theoretical basis and implementation of the measurement of vibrational (Tvib...
To improve the lean flammability limit and combustion stability of premixed methane flames, plasma c...
International audienceWe present a study of the spontaneous Raman spectra of (CH4)-C-12 from 1200 to...
The v1 vibrational Raman spectra of oriented CH₄ single crystals have been measured in the temperatu...
Rotational Raman linewidths calculated from three different models have been used in temperature mea...
Raman scattering signatures are functions of the scattering-gas temperature, and are therefore of po...
We demonstrate precise determination of atmospheric temperature using vibro-rotational Raman (VRR) s...
The implementation of \u27in situ\u27 rotational Raman spectroscopy is realized for a pulsed glow di...
The implementation of in situ rotational Raman spectroscopy is realized for a pulsed glow discharge ...
Mixing-induced vibrational non-equilibrium is studied in the turbulent shear layer between a high-sp...
Author Institution: Department of Chemistry, Faculty of Science, Okayama University, Tsushima-Naka 3...
Vibrational excitation of methane is believed to promote chemistry and improve product selectivity, ...
The gas temperature in non-equilibrium plasmas is often obtained from the plasma-induced emission by...
The pump-probe technique for investigating vibrationally excited states via high resolution Raman sp...
This work describes the theoretical basis and implementation of the measurement of vibrational (Tvib...
To improve the lean flammability limit and combustion stability of premixed methane flames, plasma c...
International audienceWe present a study of the spontaneous Raman spectra of (CH4)-C-12 from 1200 to...
The v1 vibrational Raman spectra of oriented CH₄ single crystals have been measured in the temperatu...
Rotational Raman linewidths calculated from three different models have been used in temperature mea...
Raman scattering signatures are functions of the scattering-gas temperature, and are therefore of po...
We demonstrate precise determination of atmospheric temperature using vibro-rotational Raman (VRR) s...
The implementation of \u27in situ\u27 rotational Raman spectroscopy is realized for a pulsed glow di...
The implementation of in situ rotational Raman spectroscopy is realized for a pulsed glow discharge ...
Mixing-induced vibrational non-equilibrium is studied in the turbulent shear layer between a high-sp...
Author Institution: Department of Chemistry, Faculty of Science, Okayama University, Tsushima-Naka 3...
Vibrational excitation of methane is believed to promote chemistry and improve product selectivity, ...
The gas temperature in non-equilibrium plasmas is often obtained from the plasma-induced emission by...
The pump-probe technique for investigating vibrationally excited states via high resolution Raman sp...