4.6 Article

Kinetics of highly vibrationally excited O2(X) molecules in inductively-coupled oxygen plasmas

期刊

出版社

IOP Publishing Ltd
DOI: 10.1088/1361-6595/aab47d

关键词

vibrational kinetics of O-2(X); global kinetic modelling; V-T; V-V rate coefficients; inductively-coupled oxygen plasma

资金

  1. Portuguese FCT-Fundacao para a Ciencia e a Tecnologia [UID/FIS/50010/2013]
  2. FCT/MEC-PIDDAC [Incentivo/FIS/LA0010/2014]
  3. PREMiERE [PTDC/FIS-PLA/1420/2014]
  4. Agence Nationale de la Recherche [ANR-11-IDEX-000402]
  5. Applied Materials University Research Partnership Program
  6. Scientific Grant Agency of the Slovak Republic (VEGA) [1/0903/17]
  7. Slovak Research and Development Agency [APVV-16-0612]
  8. Fundação para a Ciência e a Tecnologia [Incentivo/FIS/LA0010/2014] Funding Source: FCT

向作者/读者索取更多资源

The high degree of vibrational excitation of O-2 ground state molecules recently observed in inductively coupled plasma discharges is investigated experimentally in more detail and interpreted using a detailed self-consistent 0D global kinetic model for oxygen plasmas. Additional experimental results are presented and used to validate the model. The vibrational kinetics considers vibrational levels up to v = 41 and accounts for electron impact excitation and de-excitation (e-V), vibration-to-translation relaxation (V-T) in collisions with O-2 molecules and O atoms, vibration-to-vibration energy exchanges (V-V), excitation of electronically excited states, dissociative electron attachment, and electron impact dissociation. Measurements were performed at pressures of 10-80 mTorr (1.33 and 10.67 Pa) and radio frequency (13.56 MHz) powers up to 500 W. The simulation results are compared with the absolute densities in each O-2 vibrational level obtained by high sensitivity absorption spectroscopy measurements of the Schumann-Runge bands for O-2(X, v = 4-18), O(P-3) atom density measurements by two-photon absorption laser induced fluorescence (TALIF) calibrated against Xe, and laser photodetachment measurements of the O- negative ions. The highly excited O-2(X, v) distribution exhibits a shape similar to a Treanor-Gordiets distribution, but its origin lies in electron impact e-V collisions and not in V-V up-pumping, in contrast to what happens in all other molecular gases known to date. The relaxation of vibrational quanta is mainly due to V-T energy-transfer collisions with O atoms and to electron impact dissociation of vibrationally excited molecules, e+O-2(X, v)-> O(P-3)+O(P-3).

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