• Title of article

    Maple procedures for the coupling of angular momenta. VIII. Spin-angular coefficients for single-shell configurations Original Research Article

  • Author/Authors

    G. Gaigalas، نويسنده , , O. Scharf، نويسنده , , S. Fritzsche، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2005
  • Pages
    29
  • From page
    141
  • To page
    169
  • Abstract
    Matrix elements of physical operators are required when the accurate theoretical determination of atomic energy levels, orbitals and radiative transition data need to be obtained for open-shell atoms and ions. The spin-angular part for these matrix elements is typically based on standard quantities such as matrix elements of the unit tensor, the (reduced) coefficients of fractional parentage as well as a number of other reduced matrix elements concerning various products of electron creation and annihilation operators. Therefore, in order to facilitate the access to the matrix elements of one- and two-particle scalar operators, we present here an extension to the Racah program for the full set of standard quantities and the pure spin-angular coefficients in LS- and jj-couplings. A flexible notation is introduced for defining and manipulating the electron creation and the electron annihilation operators. This will allow us to solve successfully various angular momentum problems in atomic physics.
  • Keywords
    spin and quasispin space) , Second quantization in a coupled tensorial form , Spin-angular integration , Atomic shell model , Unit tensor , Atomic structure theory , Coefficients of fractional parentage , Angular momentum theory , Symmetry-adapted function , Complex atom and spectra , Electron creation and annihilation operators , Coefficients of fractional grandparentage , Irreducible tensors , jj-coupling , LS-coupling , One- and two-particle operators , Racah algebra within three spaces (orbital , Subshell state
  • Journal title
    Computer Physics Communications
  • Serial Year
    2005
  • Journal title
    Computer Physics Communications
  • Record number

    1136790