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Author Chakrabarty, D. R. ♦ Eswaran, M. A. ♦ Ragoowansi, N. L.
Source United States Department of Energy Office of Scientific and Technical Information
Content type Text
Language English
Subject Keyword NUCLEAR PHYSICS AND RADIATION PHYSICS ♦ ALPHA REACTIONS ♦ CAPTURE ♦ ARGON 36 ♦ -TRANSITIONS ♦ SULFUR 32 TARGET ♦ ANGULAR DISTRIBUTION ♦ ENERGY LEVELS ♦ GAMMA RADIATION ♦ ISOSPIN ♦ MEV RANGE 01-10 ♦ PARITY ♦ SELECTION RULES ♦ SPIN ♦ ANGULAR MOMENTUM ♦ ARGON ISOTOPES ♦ CHARGED-PARTICLE REACTIONS ♦ DISTRIBUTION ♦ ELECTROMAGNETIC RADIATION ♦ ENERGY RANGE ♦ ENERGY-LEVEL TRANSITIONS ♦ EVEN-EVEN NUCLEI ♦ IONIZING RADIATIONS ♦ ISOTOPES ♦ LIGHT NUCLEI ♦ MEV RANGE ♦ MULTIPOLE TRANSITIONS ♦ NUCLEAR REACTIONS ♦ NUCLEI ♦ PARTICLE PROPERTIES ♦ RADIATIONS ♦ STABLE ISOTOPES ♦ TARGETS ♦ Nuclear Properties & Reactions, A=20-38, Experimental- Energy Levels & Transitions- (-1987) ♦ Nuclear Properties & Reactions, A=20-38, Experimental- Nuclear Reactions & Scattering- (-1987)
Abstract The ..cap alpha.. capture reaction /sup 32/S(..cap alpha..,..gamma..)/sup 36/Ar was studied in the bombarding energy range of E/sub ..cap alpha../ = 4.13 to 5.00 MeV corresponding to the excitation energy range of E/sub x/ = 10.31 to 11.08 MeV in /sup 36/Ar. Seven resonances have been located and their resonance strengths determined. Two of the resonances decay predominantly to the ground state while the other five decay predominantly to the first excited state of /sup 36/Ar. Angular distribution measurements of the predominant decay gamma ray have been performed and the spin and parity of all the resonances assigned. The isospin of two of the resonances have been assigned as T = 0 while T = 1 has been assigned for three others. Evidence has been obtained for the operation of the isospin selection rule for the dipole (E1 and M1) and quadrupole (E2) gamma decay.
Educational Use Research
Learning Resource Type Article
Publisher Date 1983-09-01
Publisher Department Nuclear Physics Division, Bhabha Atomic Research Centre, Bombay 400 085, India
Publisher Place United States
Journal Phys. Rev. C
Volume Number 28
Issue Number 3
Organization Nuclear Physics Division, Bhabha Atomic Research Centre, Bombay 400 085, India


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