Calculation of the rotational transition probabilities of diatomic molecules when they collide with heavy particles

Author:

Vargin A. N.,Ganina N. A.,Konyukhov V. K.,Selyakov V. I.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference7 articles.

1. K. Takayanagi, ?On the inelastic collision between molecules. I,? Prog. Theor. Phys.,8, No. 1, 111 (1952); K. Takayanagi, ?On the inelastic collision between molecules. II,? Prog. Theor. Phys.,8, No. 5, 497 (1952); K. Takayanagi and T. Kishimoto, ?On the inelastic collision between molecules. Ill,? Prog. Theor. Phys.,9, No. 6, 578 (1953); K. Takayanagi, ?Vibrational and rotational transitions in molecular collisions,? Suppl. Prog. Theor. Phys., No. 25 (1963).

2. L. V. Leskov and F. A. Savin, ?Relaxation of nonequilibrium gas systems,? Usp. Fiz. Nauk,72, No. 4, 741 (1960); M. N. Safaryan and E. V. Stupochenko, ?Rotational relaxation of diatomic molecules in a light inert gas,? Zh. Prikl. Mekh. Tekh. Fiz., No. 4, 29 (1964); F. J. Zeleznik, ?Rotational relaxation in polar gases,? J. Chem. Phys.,47, No. 9, 3410 (1967).

3. C. F. Curtiss and R. B. Bernstein, ?Molecular collisions. IX. Restricted-wave approximation for rotational excitation and scattering of diatomic molecules,? J. Chem. Phys.,50, No. 3, 1168 (1968); R. W. Fenstermaker, C. F. Curtiss, R. B. Bernstein, ?Molecular Collisions. X. Restricted-distorted-wave-born and first-order sudden approximations for rotational excitation of diatomic molecules,? J. Chem. Phys.,51, No. 6, 2439 (1969).

4. J. J. Everdij, J. I. V. Montfort, and N. F. Verster, ?Half-classical calculation of rotational transitions,? Electron, and Atom. Collisions, Abstr. Paper 8 ICPEAC, Belgrad,1, 21 (1973); S. Saha, E. Guha, and A. K. Barua, ?Rotational inelasticity in polar diatom-atom scattering: application of the semiclassical time-dependent perturbation theory to Ne-CO and Ne-HCl systems,?1, 84 (1973).

5. J. O. Hirschfelder, C. F. Curtiss, and R. B. Bird, Molecular Theory of Gases and Liquids, Wiley (1964);

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1. Population kinetics of rotational levels in a free nitrogen jet;Journal of Applied Mechanics and Technical Physics;1982

2. Rotational transition probabilities for a water molecule colliding with an atom;Journal of Applied Mechanics and Technical Physics;1981

3. Rotational relaxation of molecular nitrogen in a freely expanding jet;Journal of Applied Mechanics and Technical Physics;1979

4. Population of the rotational levels of nitrogen molecules during nonequilibrium condensation in the freely expanding phase;Journal of Applied Mechanics and Technical Physics;1978

5. Experimental investigation of the population of the rotational levels of molecules in a free jet of nitrogen;Journal of Applied Mechanics and Technical Physics;1977

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