Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Schrodinger equation nuclear motion

Let us define x (R>.) as an n-dimensional nuclear motion column vector, whose components are Xi (R i) through X (R )- The n-electronic-state nuclear motion Schrodinger equation satisfied by (Rl) can be obtained by inserting Eqs. (12)... [Pg.185]

This makes it desirable to define other representations in addition to the electronically adiabatic one [Eqs. (9)-(12)], in which the adiabatic electronic wave function basis set used in the Bom-Huang expansion (12) is replaced by another basis set of functions of the electronic coordinates. Such a different electronic basis set can be chosen so as to minimize the above mentioned gradient term. This term can initially be neglected in the solution of the / -electionic-state nuclear motion Schrodinger equation and reintroduced later using perturbative or other methods, if desired. This new basis set of electronic wave functions can also be made to depend parametrically, like their adiabatic counterparts, on the internal nuclear coordinates q that were defined after Eq. (8). This new electronic basis set is henceforth refened to as diabatic and, as is obvious, leads to an electronically diabatic representation that is not unique unlike the adiabatic one, which is unique by definition. [Pg.188]

U(qJ is referred to as an adiabatic-to-diabatic transformation (ADT) matrix. Its mathematical sbucture is discussed in detail in Section in.C. If the electronic wave functions in the adiabatic and diabatic representations are chosen to be real, as is normally the case, U(q ) is orthogonal and therefore has n n — l)/2 independent elements (or degrees of freedom). This transformation mabix U(qO can be chosen so as to yield a diabatic electronic basis set with desired properties, which can then be used to derive the diabatic nuclear motion Schrodinger equation. By using Eqs. (27) and (28) and the orthonormality of the diabatic and adiabatic electronic basis sets, we can relate the adiabatic and diabatic nuclear wave functions through the same n-dimensional unitary transformation matrix U(qx) according to... [Pg.189]

This can be used to rewrite the diabatic nuclear motion Schrodinger equation for an incomplete set of n electronic states as... [Pg.195]

In the two-adiabatic-electronic-state Bom-Huang description of the total orbital wave function, we wish to solve the corresponding nuclear motion Schrodinger equation in the diabatic representation... [Pg.208]

Born-Huang expansion, 286—289 first-derivative coupling matrix, 290—291 nuclear motion Schrodinger equation, 289-290... [Pg.66]

Bound-state photoabsorption, direct molecular dynamics, nuclear motion Schrodinger equation, 365-373... [Pg.70]

Discrete Fourier transform (DFT), non-adiabatic coupling, Longuet-Higgins phase-based treatment, two-dimensional two-surface system, scattering calculation, 153-155 Discrete variable representation (DVR) direct molecular dynamics, nuclear motion Schrodinger equation, 364-373 non-adiabatic coupling, quantum dressed classical mechanics, 177-183 formulation, 181-183... [Pg.75]

Nuclear motion Schrodinger equation direct molecular dynamics, 363-373 vibronic coupling, adiabatic effects, 382-384 electronic states ... [Pg.90]


See other pages where Schrodinger equation nuclear motion is mentioned: [Pg.179]    [Pg.185]    [Pg.189]    [Pg.190]    [Pg.194]    [Pg.66]    [Pg.68]    [Pg.69]    [Pg.69]    [Pg.74]    [Pg.75]    [Pg.75]    [Pg.77]    [Pg.77]    [Pg.80]    [Pg.80]    [Pg.80]    [Pg.80]    [Pg.83]    [Pg.83]    [Pg.86]    [Pg.89]    [Pg.93]    [Pg.93]   
See also in sourсe #XX -- [ Pg.373 ]




SEARCH



Adiabatic representation nuclear motion Schrodinger equation

Direct molecular dynamics, nuclear motion Schrodinger equation

Electronic states nuclear motion Schrodinger equation

Equation nuclear

Hellmann-Feynman theorem nuclear motion Schrodinger equation

Kinetic energy operator nuclear motion Schrodinger equation

Motion equations

Motion equations nuclear

Nuclear Schrodinger equation

Nuclear motion

Nuclear motion Schrodinger equation diabatic representation

Nuclear motion Schrodinger equation principles

Quantum reaction dynamics, electronic states nuclear motion Schrodinger equation

Schrodinger equation for nuclear motion

Schrodinger equation motions

Schrodinger nuclear

© 2024 chempedia.info