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The J-Matrix Method Developments and Applications /

This volume aims to provide the fundamental knowledge to appreciate the advantages of the J-matrix method and to encourage its use and further development. The J-matrix method is an algebraic method of quantum scattering with substantial success in atomic and nuclear physics. The accuracy and conver...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor Corporativo: SpringerLink (Online service)
Otros Autores: Alhaidari, Abdulaziz D. (Editor ), Heller, Eric J. (Editor ), Yamani, Hashim A. (Editor ), Abdelmonem, Mohamed S. (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Dordrecht : Springer Netherlands : Imprint: Springer, 2008.
Edición:1st ed. 2008.
Temas:
Acceso en línea:Texto Completo
Tabla de Contenidos:
  • Two of the Original Papers
  • New L2 Approach to Quantum Scattering: Theory
  • J-Matrix Method: Extensions to Arbitrary Angular Momentum and to Coulomb Scattering
  • Theoretical and Mathematical Considerations
  • Oscillator Basis in the J-Matrix Method: Convergence of Expansions, Asymptotics of Expansion Coefficients and Boundary Conditions
  • Scattering Phase Shift for Relativistic Separable Potentials with Laguerre-Type Form Factors
  • Accurate Evaluation of the S-Matrix for Multi-Channel Analytic and Non-Analytic Potentials in Complex L2 Bases
  • J-Matrix and Isolated States
  • On the Regularization in J-Matrix Methods
  • Applications in Atomic Physics
  • The J-Matrix Method: A Universal Approach to Description of Ionization of Atoms
  • J-Matrix Green's Operators and Solving Faddeev Integral Equations for Coulombic Systems
  • The Use of a Complex Scaling Method to Calculate Resonance Partial Widths
  • Applications in Nuclear Physics
  • J-Matrix Approach to Loosely-Bound Three-Body Nuclear Systems
  • Nucleon-Nucleon Interaction in the J-Matrix Inverse Scattering Approach and Few-Nucleon Systems
  • The Modified J-Matrix Approach for Cluster Descriptions of Light Nuclei
  • Other Related Methods: Chemical Physics Application
  • A Generalized Formulation of Density Functional Theory with Auxiliary Basis Sets.