The relationship between the Johnson-Baranger time-dependent folded diagram expansion and the time-independent methods of perturbation theory
Description
The relationship between the Johnson-Baranger time-dependent folded diagram (JBFD) expansion, and the time independent methods of perturbation theory, are investigated. In the nondegenerate case, the JBFD expansion and the Rayleigh-Schroedinger perturbation expansion, for the ground state energy, are identical. On the other hand, in the degenerate case, for the nonhermitian effective interaction considered, the JBFD expansion, of the effective interaction, is equal to the perturbative expansion of the effective interaction of the nonhermitian eigenvalue problem of Bloch and Brandow-Des Cloizeaux. For the two hermitian effective interactions, the JBFD expansion of the effective interaction differs from the perturbation expansion of the effective interaction of the hermitian eigenvalue problem of Des Cloizeaux
Abstract (Portuguese)
Investiga-se a conexao entre a expansao em 'diagramas dobrados' de Johnson e Baranger (JBFD) e os metodos de teoria de perturbacao independente do tempo. No caso nao degenerado,a expansao de Rayleigh-Schroedinger e de JBFD sao identicas. No caso degenerado, para a interacao efetiva nao hermitiana, a expansao da interacao efetiva em JBFD e identica a expansao da interacao efetiva da equacao de autovalores nao hermitiana de Bloch e Brandow-Des Cloizeaux. Para as duas interacoes efetivas hermitianas, a expansao da interacao efetiva em JBFD difere da expansao da interacao efetiva da equacao de autovalores hermitiana de Des CloizeauxAdditional details
Publishing Information
- Journal Title
- Rev. Bras. Fis.
- Journal Volume
- 6
- Journal Issue
- 2
- Series
- Rev. Bras. Fis.
- Journal Page Range
- 181-197
INIS
- Country of Publication
- Brazil
- Country of Input or Organization
- Brazil
- INIS RN
- 9380252
- Subject category
- S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
- Descriptors DEI
- BLOCH THEORY; COMPARATIVE EVALUATIONS; DIAGRAMS; EIGENVALUES; GROUND STATES; HERMITIAN OPERATORS; PERTURBATION THEORY; RAYLEIGH-SCHROEDINGER FORMULA; TIME DEPENDENCE
- Descriptors DEC
- ENERGY LEVELS; INFORMATION; MATHEMATICAL OPERATORS