Low-energy electron attachment and detachment in vibrationally excited oxygen

被引:19
作者
Aleksandrov, N. L. [1 ]
Anokhin, E. M. [1 ]
机构
[1] Moscow Inst Phys & Technol, Dolgoprudnyi 141700, Russia
关键词
COLLISIONAL RELAXATION; MOLECULES; O-2; COEFFICIENTS; DISCHARGE; MECHANISM; IONS; O2;
D O I
10.1088/0022-3727/42/22/225210
中图分类号
O59 [应用物理学];
学科分类号
摘要
Three-body electron attachment to O-2 molecules and electron detachment from O-2(-) ions have been theoretically studied in vibrationally excited oxygen and O-2-containing mixtures. Assuming that electron attachment and detachment proceed via the formation of vibrationally excited temporary O-2(-) ions, the rates of these processes were determined on the basis of the statistical approach for the vibrational transfer and relaxation in collisions between O-2(-) ions and O-2 molecules. The calculated attachment and detachment rate constants turned out to agree well with available measurements in unexcited oxygen. This method was extended to calculate attachment and detachment rates in vibrationally excited oxygen. It was shown that the effect of vibrational excitation on electron detachment is profound, whereas attachment of low-energy electrons to vibrationally excited O-2 is inefficient. The calculated vibrational distribution of stable O-2(-) ions turned out to be non-equilibrium in an excited gas and the effective vibrational temperature of the ions was much lower than the vibrational temperature of molecules. An analytical method was suggested to determine this distribution and the effective vibrational temperature. The calculated rate constants were used to simulate the formation and decay of an electron-beam-generated plasma in N-2 : O-2 mixtures at elevated vibrational temperatures. The calculations showed that vibrational excitation of molecules leads to orders of magnitude increase in the plasma density and in the plasma lifetime, in agreement with available observations.
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页数:13
相关论文
共 45 条
[21]   Dissociative recombination [J].
Florescu-Mitchell, A. I. ;
Mitchell, J. B. A. .
PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS, 2006, 430 (5-6) :277-374
[22]   Mitigation of electron attachment to oxygen in high pressure air plasmas by vibrational excitation [J].
Frederickson, K. ;
Lee, W. ;
Palm, P. ;
Adamovich, I. V. ;
Rich, J. W. ;
Lempert, W. R. .
JOURNAL OF APPLIED PHYSICS, 2007, 101 (09)
[23]  
GRUNBERG R, 1969, Z NATURFORSCH PT A, VA 24, P1039
[24]   Solving the Boltzmann equation to obtain electron transport coefficients and rate coefficients for fluid models [J].
Hagelaar, GJM ;
Pitchford, LC .
PLASMA SOURCES SCIENCE & TECHNOLOGY, 2005, 14 (04) :722-733
[25]   ATTACHMENT OF SLOW ELECTRONS OF OXYGEN MOLECULES [J].
HERZENBERG, A .
JOURNAL OF CHEMICAL PHYSICS, 1969, 51 (11) :4942-+
[26]  
Huxley L. G. H., 1974, The Diffusion and Drift of Electrons in Gases
[27]  
KARACHEVTSEV GV, 1970, KHIM VYS ENERG, V4, P387
[28]  
KARACHEVTSEV GV, 1987, CHEM PLASMAS, P255
[29]   Kinetic scheme of the non-equilibrium discharge in nitrogen-oxygen mixtures [J].
Kossyi, I. A. ;
Kostinsky, A. Yu ;
Matveyev, A. A. ;
Silakov, V. P. .
PLASMA SOURCES SCIENCE & TECHNOLOGY, 1992, 1 (03) :207-220
[30]  
Levine R. D, 2005, Molecular Reaction Dynamics, P4449