C$sup 14$(d,n)N$sup 15$ REACTION
Differential cross sections for ground-state neutrons from the C/sup 14/ (d,n)N/sup 15/ reaction have been measured at E/sub d/ = 3.53 Mev and 2.786 Mev by a neutron spectrometer. A stripping peak implying l/sub p/= 1 is observed. The excitation function of the ground-state neutrons has been measured from E/sub d/ = 1.2 Mev to E/sub d/ = 3.53 Mev. A number of resonances were found corresponding tc virtual states of N/sup 16/. The angular distributions of neutrons associated with the of N/sup 15/ were measured by photographic emulsion technique. A stripping peak characteristic of l/sub p/= 0 corresponds to the unresolved doublet, and l/sub p/= 1 to the 6.33-Mev state. The excitation function for all neutrons from C/sup 14/(d,n)N/sup 15/ was measured both by "slow" and "fast" neutron counters. Several possible slow-neutron thresholds were found corresponding to excited states of N/sup 15/. The sensitivity of the slow-neutron threshold technique was checked by the O/sup 16/(d,n)F/sup 17/. Accurate values of these thresholds are reported. ( auth)
- Research Organization:
- Univ. of Wisconsin, Madison
- NSA Number:
- NSA-15-028547
- OSTI ID:
- 4843239
- Journal Information:
- Physical Review (U.S.) Superseded in part by Phys. Rev. A, Phys. Rev. B: Solid State, Phys. Rev. C, and Phys. Rev. D, Journal Name: Physical Review (U.S.) Superseded in part by Phys. Rev. A, Phys. Rev. B: Solid State, Phys. Rev. C, and Phys. Rev. D Vol. Vol: 123; ISSN PHRVA
- Country of Publication:
- Country unknown/Code not available
- Language:
- English
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INVERSE PHOTONUCLEAR REACTIONS N$sup 14$(p,$gamma$)O$sup 15$ AND N$sup 15$(p,$gamma$)O$sup 16$ IN THE REGION OF THE GIANT RESONANCE
On the Protons from the N 14 ( d , p )N 15 Reaction
Related Subjects
CARBON 14
CROSS SECTIONS
DEUTERON BEAMS
ENERGY LEVELS
ENERGY RANGE
EXCITATION
EXCITATION FUNCTION
FLUORINE 17
MEASURED VALUES
MEV RANGE
NEUTRON DETECTION
NEUTRON SPECTROMETERS
NEUTRONS
NITROGEN 15
NITROGEN 16
NUCLEAR EMULSIONS
NUCLEAR MODELS
NUCLEAR REACTIONS
OXYGEN 16
PHYSICS
RESONANCE
STRIPPING
TARGETS