Time-dependent Hartree-Fock fusion calculations in /sup 86/Kr+/sup 139/La and /sup 84/Kr+/sup 209/Bi collisions
Journal Article
·
· Phys. Rev. Lett.; (United States)
Time-dependent Hartree-Fock fusion calculations are presented for head-on collisions of /sup 86/Kr+/sup 139/La and /sup 84/Kr+/sup 209/Bi. A large fusion region is found for moderately high energies above the Coulomb barrier, and a lower limit for the fusion cross section of /sup 84/Kr+/sup 209/Bi ..-->.. /sup 293//sub 119/X* is estimated from non--head-on collisions. Also fusionlike behavior is found for a narrow range of energies near the barrier.
- Research Organization:
- Physics Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37830
- DOE Contract Number:
- EY-76-C-02-3074; W-7405-ENG-26
- OSTI ID:
- 5633648
- Journal Information:
- Phys. Rev. Lett.; (United States), Journal Name: Phys. Rev. Lett.; (United States) Vol. 44:1; ISSN PRLTA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
651715* -- Nuclear Properties & Reactions
A=90-149
Theoretical-- Nuclear Reactions & Scattering-- (-1987)
651915 -- Nuclear Properties & Reactions
A=190-219
Theoretical-- Nuclear Reactions & Scattering-- (-1987)
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ANGULAR MOMENTUM
BISMUTH 209 TARGET
CHARGED-PARTICLE REACTIONS
COULOMB FIELD
CROSS SECTIONS
ELECTRIC FIELDS
ENERGY RANGE
FUSION REACTIONS
HARTREE-FOCK METHOD
HEAVY ION REACTIONS
KRYPTON 84 REACTIONS
KRYPTON 86 REACTIONS
LANTHANUM 139 TARGET
MEV RANGE
MEV RANGE 100-1000
NUCLEAR REACTIONS
TARGETS
TIME DEPENDENCE
A=90-149
Theoretical-- Nuclear Reactions & Scattering-- (-1987)
651915 -- Nuclear Properties & Reactions
A=190-219
Theoretical-- Nuclear Reactions & Scattering-- (-1987)
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ANGULAR MOMENTUM
BISMUTH 209 TARGET
CHARGED-PARTICLE REACTIONS
COULOMB FIELD
CROSS SECTIONS
ELECTRIC FIELDS
ENERGY RANGE
FUSION REACTIONS
HARTREE-FOCK METHOD
HEAVY ION REACTIONS
KRYPTON 84 REACTIONS
KRYPTON 86 REACTIONS
LANTHANUM 139 TARGET
MEV RANGE
MEV RANGE 100-1000
NUCLEAR REACTIONS
TARGETS
TIME DEPENDENCE