/sup 36,38/Ar(d-bar,. cap alpha. )/sup 34,36/Cl reactions induced by tensor polarized deuterons
Journal Article
·
· Phys. Rev. C; (United States)
Exact finite-range distorted-wave Born approximation analyses of cross section and vector and tensor analyzing power angular distributions for some /sup 36,38/Ar(d-arrow-right,..cap alpha..) transitions induced by 16 MeV polarized deuterons have been performed using full s-italicd-italic-shell model wave functions and including a D-italic-state amplitude for the ..cap alpha.. particle. The L-italic-mixing ratios R-italic for several unnatural parity transitions have been determined from comparisons of the calculations with the tensor analyzing power data. Shell-model calculations are found to be in agreement with the experimentally obtained phases of R-italic, while the predicted magnitudes agree well in some cases.
- Research Organization:
- University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27514 and Triangle Universities Nuclear Laboratory, Durham, North Carolina 27706
- OSTI ID:
- 5427134
- Journal Information:
- Phys. Rev. C; (United States), Journal Name: Phys. Rev. C; (United States) Vol. 34:2; ISSN PRVCA
- Country of Publication:
- United States
- Language:
- English
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Configuration mixing in [sup 56]Co and [sup 46]Sc using ([ital [rvec d]],[alpha]) reactions
Journal Article
·
Mon Aug 01 00:00:00 EDT 1983
· Phys. Rev. C; (United States)
·
OSTI ID:5650520
cap alpha. -particle D-state components from (d,. cap alpha. ) analyzing powers
Journal Article
·
Mon Oct 22 00:00:00 EDT 1984
· Phys. Rev. Lett.; (United States)
·
OSTI ID:6257799
Configuration mixing in [sup 56]Co and [sup 46]Sc using ([ital [rvec d]],[alpha]) reactions
Journal Article
·
Fri Oct 01 00:00:00 EDT 1993
· Physical Review, C (Nuclear Physics); (United States)
·
OSTI ID:6039945
Related Subjects
651415* -- Nuclear Properties & Reactions
A=20-38
Theoretical-- Nuclear Reactions & Scattering-- (-1987)
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ALPHA PARTICLES
ANALYZING POWER
ANGULAR DISTRIBUTION
ARGON 36 TARGET
ARGON 38 TARGET
BEAMS
BETA DECAY RADIOISOTOPES
BETA-MINUS DECAY RADIOISOTOPES
BETA-PLUS DECAY RADIOISOTOPES
BORN APPROXIMATION
CHARGED PARTICLES
CHARGED-PARTICLE REACTIONS
CHLORINE 34
CHLORINE 36
CHLORINE ISOTOPES
CROSS SECTIONS
D STATES
DEUTERON REACTIONS
DIRECT REACTIONS
DISTRIBUTION
DWBA
ELECTRON CAPTURE RADIOISOTOPES
ENERGY LEVELS
ENERGY RANGE
FUNCTIONS
ISOMERIC TRANSITION ISOTOPES
ISOTOPES
LIGHT NUCLEI
MATHEMATICAL MODELS
MEV RANGE
MEV RANGE 10-100
MINUTES LIVING RADIOISOTOPES
MIXING RATIO
MULTI-NUCLEON TRANSFER REACTIONS
NUCLEAR MODELS
NUCLEAR REACTIONS
NUCLEI
ODD-ODD NUCLEI
PARITY
PARTICLE PROPERTIES
PICKUP REACTIONS
POLARIZED BEAMS
RADIOISOTOPES
SECONDS LIVING RADIOISOTOPES
SHELL MODELS
TARGETS
TENSOR FORCES
TRANSFER REACTIONS
TWO-NUCLEON TRANSFER REACTIONS
WAVE FUNCTIONS
YEARS LIVING RADIOISOTOPES
A=20-38
Theoretical-- Nuclear Reactions & Scattering-- (-1987)
73 NUCLEAR PHYSICS AND RADIATION PHYSICS
ALPHA PARTICLES
ANALYZING POWER
ANGULAR DISTRIBUTION
ARGON 36 TARGET
ARGON 38 TARGET
BEAMS
BETA DECAY RADIOISOTOPES
BETA-MINUS DECAY RADIOISOTOPES
BETA-PLUS DECAY RADIOISOTOPES
BORN APPROXIMATION
CHARGED PARTICLES
CHARGED-PARTICLE REACTIONS
CHLORINE 34
CHLORINE 36
CHLORINE ISOTOPES
CROSS SECTIONS
D STATES
DEUTERON REACTIONS
DIRECT REACTIONS
DISTRIBUTION
DWBA
ELECTRON CAPTURE RADIOISOTOPES
ENERGY LEVELS
ENERGY RANGE
FUNCTIONS
ISOMERIC TRANSITION ISOTOPES
ISOTOPES
LIGHT NUCLEI
MATHEMATICAL MODELS
MEV RANGE
MEV RANGE 10-100
MINUTES LIVING RADIOISOTOPES
MIXING RATIO
MULTI-NUCLEON TRANSFER REACTIONS
NUCLEAR MODELS
NUCLEAR REACTIONS
NUCLEI
ODD-ODD NUCLEI
PARITY
PARTICLE PROPERTIES
PICKUP REACTIONS
POLARIZED BEAMS
RADIOISOTOPES
SECONDS LIVING RADIOISOTOPES
SHELL MODELS
TARGETS
TENSOR FORCES
TRANSFER REACTIONS
TWO-NUCLEON TRANSFER REACTIONS
WAVE FUNCTIONS
YEARS LIVING RADIOISOTOPES