Phy5646/Born-Oppenheimer Approximation: Difference between revisions
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<math> \hat{H}_{eff} = \frac{1}{2m}(\overrightarrow{P} - \overrightarrow{A}^{n})^2 + \Phi^{(n)} </math> | <math> \hat{H}_{eff} = \frac{1}{2m}(\overrightarrow{P} - \overrightarrow{A}^{n})^2 + \Phi^{(n)} </math> |
Revision as of 19:53, 20 April 2010
Consider the problem of two protons and one electron.
As for the two protons, we consider the two bodies problem as one body problem.
The wave function is:
First step:
Consider R is fixed, to solve the schrodinger equation of electron.
Second step:
Seek an solution of H as:
If is the eigenstate of the fast degree of freedom, the following quantities are defined:
The Berry Vector Potential:
The Berry Scalar Potential: