Published April 21, 1983
| Version v1
Journal article
Quantized ATDHF calculations for subbarrier fusion of heavy ions
Creators
- 1. Bonn Univ. (Germany, F.R.). Inst. fuer Theoretische Kernphysik
- 2. Kernforschungsanlage Juelich G.m.b.H. (Germany, F.R.). Inst. fuer Kernphysik
- 3. Mainz Univ. (Germany, F.R.). Inst. fuer Kernphysik
Description
The quantized adiabatic time-dependent Hartree-Fock theory (quantized ATDHF) is applied to the subbarrier fusion process of 16O + 16O -> 32S. The corresponding optimal, i.e. maximally decoupled collective path is evaluated by means of three-dimensional coordinate and momentum space grid techniques using the Bonche-Koonin-Negele interaction completed by the Coulomb force. Collective mass parameters, potentials, quantum corrections and rotational moments of inertia are evaluated in dependence of the distance between the ions. The results are compared to experimental fusion data and to the outcome of Hartree-Fock with quadrupole constraint. (orig.)
Additional details
Publishing Information
- Journal Title
- Phys. Lett., B
- Journal Volume
- 124
- Journal Issue
- 1/2
- Series
- CODEN: PYLBA.;Phys. Lett., B.
- Journal Page Range
- 21-25
- ISSN
- 0370-2693
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- Netherlands
- INIS RN
- 14774561
- Subject category
- S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
- Resource subtype / Literary indicator
- Numerical Data
- Descriptors DEI
- ADIABATIC APPROXIMATION; COLLECTIVE MODEL; COMPOUND NUCLEI; COMPOUND-NUCLEUS REACTIONS; CORRECTIONS; COULOMB FIELD; EFFECTIVE MASS; ENERGY DEPENDENCE; HARTREE-FOCK METHOD; HEAVY ION FUSION REACTIONS; MEV RANGE 01-10; MEV RANGE 10-100; MOMENT OF INERTIA; NUCLEAR REACTION KINETICS; OXYGEN 16 REACTIONS; OXYGEN 16 TARGET; PHASE SPACE; ROTATIONAL STATES; SECOND QUANTIZATION; SULFUR 36; THEORETICAL DATA; THREE-DIMENSIONAL CALCULATIONS; TIME DEPENDENCE; TOTAL CROSS SECTIONS
- Descriptors DEC
- CROSS SECTIONS; DATA; ELECTRIC FIELDS; ENERGY LEVELS; ENERGY RANGE; EVEN-EVEN NUCLEI; EXCITED STATES; HEAVY ION REACTIONS; INFORMATION; ISOTOPES; KINETICS; LIGHT NUCLEI; MASS; MATHEMATICAL MODELS; MATHEMATICAL SPACE; MEV RANGE; NUCLEAR MODELS; NUCLEAR REACTIONS; NUCLEI; NUCLEOSYNTHESIS; NUMERICAL DATA; QUANTIZATION; REACTION KINETICS; SPACE; STABLE ISOTOPES; SULFUR ISOTOPES; TARGETS