Complex‐valued classical trajectories for reactive tunneling in three‐dimensional collisions of H and H2
暂无分享,去创建一个
[1] J. Light,et al. Quantum Calculations of Planar Reactive H+H2. II. Application , 1972 .
[2] R. Marcus. Theory of Semiclassical Transition Probabilities (S Matrix) for Inelastic and Reactive Collisions. Uniformization with Elastic Collision Trajectories , 1972 .
[3] W. Fite,et al. Atom‐Molecule Reaction D+H2 → HD+H Studied by Molecular Beams , 1972 .
[4] K. Freed. Path Integrals and Semiclassical Tunneling, Wavefunctions, and Energies , 1972 .
[5] D. McLaughlin. Complex Time, Contour Independent Path Integrals, and Barrier Penetration , 1972 .
[6] J. Doll,et al. Classical S‐Matrix for Vibrational Excitation of H2 by Collision with He in Three Dimensions , 1972 .
[7] M. Karplus,et al. QUANTUM THEORY OF (H,H$sub 2$) SCATTERING: APPROXIMATE TREATMENTS OF REACTIVE SCATTERING. , 1971 .
[8] B. Eu. Theory of Inelastic Collisions. II. The Proof of Conjectured Rules for the WKB‐Type General Solutions , 1970 .
[9] W. Miller. Coupled Equations and the Minimum Principle for Collisions of an Atom and a Diatomic Molecule, Including Rearrangements , 1969 .
[10] H. Johnston. Gas Phase Reaction Rate Theory , 1966 .
[11] M. Karplus,et al. Potential Energy Surface for H3 , 1964 .
[12] N. Blais,et al. Monte Carlo Calculations. II. The Reactions of Alkali Atoms with Methyl Iodide , 1962 .
[13] A. Messiah. Quantum Mechanics , 1961 .
[14] P. Morse,et al. Methods of theoretical physics , 1955 .