Filters
Results 1 - 1 of 1
Results 1 - 1 of 1.
Search took: 0.026 seconds
AbstractAbstract
[en] We describe a method of solving the nuclear Skyrme-Hartree-Fock problem by using a deformed Cartesian harmonic oscillator basis. The complete list of expressions required to calculate local densities, total energy, and self-consistent fields is presented, and an implementation of the self-consistent symmetries is discussed. Formulas to calculate matrix elements in the Cartesian harmonic oscillator basis are derived for the nuclear and Coulomb interactions. (authors)
Primary Subject
Source
1996; 26 p; 39 refs.
Record Type
Report
Report Number
Country of publication
ANGULAR MOMENTUM, COULOMB FIELD, H CODES, HARMONIC OSCILLATORS, HARTREE-FOCK METHOD, HIGH SPIN STATES, MANY-BODY PROBLEM, MEAN-FIELD THEORY, MOMENT OF INERTIA, NEUTRONS, NUCLEAR RADII, OCTUPOLES, PAIRING INTERACTIONS, PROTONS, QUADRUPOLE MOMENTS, ROTATIONAL STATES, SELF-CONSISTENT FIELD, SINGLE-PARTICLE MODEL, SKYRME POTENTIAL, SUPERDEFORMED NUCLEI, SYMMETRY, T INVARIANCE, WAVE FUNCTIONS
BARYONS, CALCULATION METHODS, CATIONS, CHARGED PARTICLES, COMPUTER CODES, DEFORMED NUCLEI, ELECTRIC FIELDS, ELEMENTARY PARTICLES, ENERGY LEVELS, EXCITED STATES, FERMIONS, FUNCTIONS, HADRONS, HYDROGEN IONS, HYDROGEN IONS 1 PLUS, INTERACTIONS, INVARIANCE PRINCIPLES, IONS, MULTIPOLES, NUCLEAR PROPERTIES, NUCLEI, NUCLEON-NUCLEON POTENTIAL, NUCLEONS, POTENTIALS
Reference NumberReference Number
INIS VolumeINIS Volume
INIS IssueINIS Issue