Separation of slow motion in E⊗ϵ vibronic states
暂无分享,去创建一个
[1] O. Goscinski,et al. Non-adiabaticity in terms of dynamic potentials. An analysis of linear e⊗ϵ vibronic states , 1989 .
[2] W. Andreoni,et al. Excited states and Jahn–Teller interactions in the sodium trimer , 1988 .
[3] E. Grant,et al. Topological phase in molecular bound states: Application to the E⊗e system , 1987 .
[4] V. Mujica,et al. Dynamic coordinate separation and state-dependent potentials. An analysis of localization in helium , 1987 .
[5] Grant,et al. Fractional quantization of molecular pseudorotation in Na3. , 1986, Physical review letters.
[6] E. Grant,et al. The dynamic Jahn–Teller effect in sym‐triazine: Nonadiabatic wave functions and hindered fluxionality , 1986 .
[7] H. Taylor,et al. Fundamentals and mechanisms of quantum localization in multidimensional correlated systems , 1984 .
[8] J. B. Hopkins,et al. Spectroscopic studies of the jet-cooled copper trimer , 1983 .
[9] C. Mead,et al. On the determination of Born–Oppenheimer nuclear motion wave functions including complications due to conical intersections and identical nuclei , 1979 .
[10] S. Epstein. Ground‐State Energy of a Molecule in the Adiabatic Approximation , 1966 .
[11] E. Grant,et al. Molecular Dynamics Beyond the Adiabatic Approximation: New Experiments and Theory , 1985 .
[12] C. Mead,et al. On the form of the adiabatic and diabatic representation and the validity of the adiabatic approximation for X3 Jahn–Teller systems , 1985 .