Spectra of Stimulated Emission in the Hydrogen-Fluorine Reaction Process and Energy Transfer from DF to CO(2).
暂无分享,去创建一个
A. I. Nikitin | V. I. Igoshin | N. G. Basov | A. Oraevsky | L. V. Kulakov | V. T. Galochkin | E. P. Martin
[1] D. H. Slater,et al. Initial Vibrational Energy Level Populations Resulting from the Reaction H+F2 as Studied by Infrared Chemiluminescence , 1970 .
[2] Yuan-Pern Lee,et al. Crossed Molecular Beam Study of F+D2 , 1970 .
[3] A. I. Nikitin,et al. Branching reactions and chemical lasers , 1970 .
[4] John C. Polanyi,et al. Energy Distribution in the Exothermic Reaction F + H2 and the Endothermic Reaction HF + H , 1969 .
[5] R. Stephens,et al. Chemical Laser by Fluid Mixing , 1969 .
[6] J. Parker,et al. Vibrational Energy Distribution through Chemical Laser Studies. I. Fluorine Atoms plus Hydrogen or Methane , 1969 .
[7] R. Gross. Chemically Pumped CO2 Laser , 1969 .
[8] J. Stephenson,et al. Laser-excited vibrational fluorescence of HCI and the HCICO2 laser , 1968 .
[9] J. Parker,et al. Hydrogen Fluoride Chemical Laser Emission through Hydrogen‐Atom Abstraction from Hydrocarbons , 1968 .
[10] T. A. Jacobs,et al. HF Chemical Laser Produced by Flash Photolysis of F2O–H2 Mixtures , 1968 .
[11] K. L. Kompa,et al. Hydrofluoric Acid Chemical Laser , 1967 .
[12] D. E. Mann,et al. Spectroscopy of Fluorine Flames. I. Hydrogen‐Fluorine Flame and the Vibration‐Rotation Emission Spectrum of HF , 1961 .
[13] J. L. Dunham. The Energy Levels of a Rotating Vibrator , 1932 .