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Angular momentum distributions for {sup 16}O + {sup 144}Nd

Abstract

Fusion cross sections have been measured for the system {sup 16} O + {sup 144} Nd at bombarding energies in the range 67 MeV {<=}E{sub lab} {<=} 90 MeV by detecting directly evaporation residues in Si detectors and in the range 60 MeV {<=}E{sub lab}{<=} 75 MeV by off-line detection of the K X-rays emitted by the radioactive evaporation residues and daughters. In order to obtain the spin distributions in the compound system gamma-ray multiplicity distributions for the most important neutron evaporation channels were also measured using a 4{pi} - BaF{sub 2} array, in conjunction with Ge detectors. Results are compared with calculations based on models that consider fluctuations in barrier height due to ground state zero point vibrations as well as couplings to various inelastic and transfer channels.
Authors:
Duchene, G; Romain, P; Beck, F A; Benet, P; Disdier, D; Haas, B; Lott, B; Rauch, V; Scheibling, F; Vivien, J P; [1]  Basu, S K; [2]  Bozek, E; Zuber, K; [3]  Di Gregorio, D E; Fernandez-Niello, J [4] 
  1. Strasbourg-1 Univ., 67 (France). Centre de Recherches Nucleaires
  2. Bhabha Atomic Research Centre, Calcutta (India). Variable Energy Cyclotron Project
  3. Institute of Nuclear Physics, Cracow (Poland)
  4. Comision Nacional de Energia Atomica, Buenos Aires (Argentina). Dept. de Fisica
Publication Date:
Dec 31, 1992
Product Type:
Technical Report
Report Number:
CRN-92-51
Reference Number:
SCA: 663450; PA: AIX-24:043610; SN: 93000991576
Resource Relation:
Other Information: PBD: 1992
Subject:
73 NUCLEAR PHYSICS AND RADIATION PHYSICS; HEAVY ION FUSION REACTIONS; OXYGEN 16 REACTIONS; NEUTRONS; ANGULAR MOMENTUM; CROSS SECTIONS; GEV RANGE 01-10; C CODES; COUPLED CHANNEL THEORY; EVAPORATION MODEL; EXPERIMENTAL DATA; HIGH-PURITY GE DETECTORS; NEODYMIUM 144 TARGET; SOLID SCINTILLATION DETECTORS; 663450; HEAVY-ION-INDUCED REACTIONS AND SCATTERING
OSTI ID:
10154068
Research Organizations:
Strasbourg-1 Univ., 67 (France). Centre de Recherches Nucleaires
Country of Origin:
France
Language:
English
Other Identifying Numbers:
Other: ON: DE93626899; TRN: FR9302232043610
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
FRN
Size:
[45] p.
Announcement Date:
Jul 06, 2005

Citation Formats

Duchene, G, Romain, P, Beck, F A, Benet, P, Disdier, D, Haas, B, Lott, B, Rauch, V, Scheibling, F, Vivien, J P, Basu, S K, Bozek, E, Zuber, K, Di Gregorio, D E, and Fernandez-Niello, J. Angular momentum distributions for {sup 16}O + {sup 144}Nd. France: N. p., 1992. Web.
Duchene, G, Romain, P, Beck, F A, Benet, P, Disdier, D, Haas, B, Lott, B, Rauch, V, Scheibling, F, Vivien, J P, Basu, S K, Bozek, E, Zuber, K, Di Gregorio, D E, &amp; Fernandez-Niello, J. Angular momentum distributions for {sup 16}O + {sup 144}Nd. France.
Duchene, G, Romain, P, Beck, F A, Benet, P, Disdier, D, Haas, B, Lott, B, Rauch, V, Scheibling, F, Vivien, J P, Basu, S K, Bozek, E, Zuber, K, Di Gregorio, D E, and Fernandez-Niello, J. 1992. "Angular momentum distributions for {sup 16}O + {sup 144}Nd." France.
@misc{etde_10154068,
title = {Angular momentum distributions for {sup 16}O + {sup 144}Nd}
author = {Duchene, G, Romain, P, Beck, F A, Benet, P, Disdier, D, Haas, B, Lott, B, Rauch, V, Scheibling, F, Vivien, J P, Basu, S K, Bozek, E, Zuber, K, Di Gregorio, D E, and Fernandez-Niello, J}
abstractNote = {Fusion cross sections have been measured for the system {sup 16} O + {sup 144} Nd at bombarding energies in the range 67 MeV {<=}E{sub lab} {<=} 90 MeV by detecting directly evaporation residues in Si detectors and in the range 60 MeV {<=}E{sub lab}{<=} 75 MeV by off-line detection of the K X-rays emitted by the radioactive evaporation residues and daughters. In order to obtain the spin distributions in the compound system gamma-ray multiplicity distributions for the most important neutron evaporation channels were also measured using a 4{pi} - BaF{sub 2} array, in conjunction with Ge detectors. Results are compared with calculations based on models that consider fluctuations in barrier height due to ground state zero point vibrations as well as couplings to various inelastic and transfer channels.}
place = {France}
year = {1992}
month = {Dec}
}