Geometric interpretation of the adiabatic model for heavy-ion fusion
Journal Article
·
· Phys. Rev. C; (United States)
The relation between the finite basis adiabatic model and the classical adiabatic model (corresponding to a complete set of degenerate states) is elucidated when the internal system is rotational or vibrational. It is shown that the finite basis results can be obtained from the classical model results using the Gaussian quadrature to evaluate the former and Hermite quadrature for the latter.
- Research Organization:
- Joint Institute for Heavy Ion Research, Oak Ridge, Tennessee 37831
- OSTI ID:
- 5105732
- Journal Information:
- Phys. Rev. C; (United States), Journal Name: Phys. Rev. C; (United States) Vol. 34:3; ISSN PRVCA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
653003* -- Nuclear Theory-- Nuclear Reactions & Scattering
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ADIABATIC APPROXIMATION
CLASSICAL MECHANICS
CORIOLIS FORCE
COULOMB FIELD
COUPLED CHANNEL THEORY
CROSS SECTIONS
DIFFERENTIAL CROSS SECTIONS
ELECTRIC FIELDS
ENERGY
ENERGY LEVELS
EXCITED STATES
HAMILTONIANS
HEAVY ION FUSION REACTIONS
KINETIC ENERGY
MATHEMATICAL OPERATORS
MECHANICS
NUCLEAR REACTIONS
QUANTUM OPERATORS
ROTATIONAL STATES
TOTAL CROSS SECTIONS
VIBRATIONAL STATES
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ADIABATIC APPROXIMATION
CLASSICAL MECHANICS
CORIOLIS FORCE
COULOMB FIELD
COUPLED CHANNEL THEORY
CROSS SECTIONS
DIFFERENTIAL CROSS SECTIONS
ELECTRIC FIELDS
ENERGY
ENERGY LEVELS
EXCITED STATES
HAMILTONIANS
HEAVY ION FUSION REACTIONS
KINETIC ENERGY
MATHEMATICAL OPERATORS
MECHANICS
NUCLEAR REACTIONS
QUANTUM OPERATORS
ROTATIONAL STATES
TOTAL CROSS SECTIONS
VIBRATIONAL STATES