Published April 1987 | Version v1
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Entrance channel influence on the formation and decay of hot nuclei

Description

Different entrance channels have been investigated to form very hot nuclei and to study their decay properties. i) Argon and Nickel projectiles accelerated around the Fermi energy show that central collisions induce momentum transfers to target nuclei which are proportional to the mass of the projectile and not to its velocities in the studied energy range. The preequilibrium model fits nicely the experimental results. The decay properties of the fission products for hot nuclei will be presented. Both head-on collisions and peripheral massive transfers contribute to the formation of very excited nuclei. The question of the influence of the energy deposit in the composite like system in limiting their yields is discussed. ii) Investigations have been also achieved with alpha projectiles at much higher incident energy (around 1 GeV/u). It is shown that hot and thermalized nuclei are also formed even when the nucleon-nucleon collisions are predominant. A sensitive parameter of the transition from binary fission to multifragmentation seems to be the energy deposit in the target residues rather than the projectile velocity

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Additional details

Publishing Information

Imprint Pagination
19 p.
Report number
CEA-CONF--9024

Conference

Title
Symposium on central collisions and fragmentation processes.
Dates
Apr 1987.
Place
Denver, CO (USA).

Optional Information

Secondary number(s)
CEA-DPh-N-S--2450B.