Published January 2013 | Version v1
Journal article

The prediction of non-compound nucleus fission contribution as a function of the mass number of projectile to induced fission of 82208Pb nucleus

  • 1. Bu-Ali Sina University, College of Sciences, Department of Physics, Hamedan (Iran, Islamic Republic of)

Description

The recent investigations show that the size and mass number of the target nucleus in the heavy-ion fission reactions are very important for the angular distribution of fission fragments. In this work, we consider the behavior of fission fragment angular anisotropies within the standard saddle-point statistical model for the 816O, 818O, 919F, 1224Mg, 1428Si,1632S+82208Pb fission reaction systems. As a result, a relation is found between the average contribution of non-compound nucleus fission and the mass number of projectile for these systems. It is also obtained that the onset of this contribution is significant for the projectile with the mass number greater than 20, as well as this quantity is an increasing function of the mass number of projectile. Finally, the comparison condition between α, and αBG is modified for these reaction systems.

Availability note (English)

Available from Atomic Energy Organization of Iran

Additional details

Additional titles

Original title (Persian)
Pishbini-e sham-e far'ayand-haye shekaft-e gheir-e haste-ye morakab bar hasb-e adad-e jermi-e partabe dar vakonesh-e shekaft-e elghaei-e

Publishing Information

Journal Title
Iranian Journal of Physics Research
Journal Volume
12
Journal Issue
no.4
Journal Page Range
p. 281-288
ISSN
1682-6957

INIS

Country of Publication
Iran, Islamic Republic of
Country of Input or Organization
Iran, Islamic Republic of
INIS RN
44095960
Subject category
S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
Descriptors DEI
ANGULAR MOMENTUM; ASYMMETRY; COMPOUND-NUCLEUS REACTIONS; FISSION FRAGMENTS; HEAVY ION REACTIONS; LEAD; MASS NUMBER; PROJECTILES; SADDLE-POINT METHOD
Descriptors DEC
CALCULATION METHODS; ELEMENTS; METALS; NUCLEAR FRAGMENTS; NUCLEAR REACTIONS