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Formation, separation and detection of evaporation residues produced in complete fusion reactions

Some aspects of formation, separation and detection of evaporation residues (ERs) produced in complete fusion reactions induced by accelerated heavy ions are considered. These reactions allow to obtain heavy neutron-deficient nuclei and to study their properties. The statistical model ana...

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Autor principal: Sagaidak, R N
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2115384
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author Sagaidak, R N
author_facet Sagaidak, R N
author_sort Sagaidak, R N
collection CERN
description Some aspects of formation, separation and detection of evaporation residues (ERs) produced in complete fusion reactions induced by accelerated heavy ions are considered. These reactions allow to obtain heavy neutron-deficient nuclei and to study their properties. The statistical model analysis of the production cross sections for these nuclei obtained in a wide range of their neutron numbers allows to trace the changes in their macroscopic properties such as fission barriers. The fusion probability of massive projectile and target nuclei is of interest. Empirical estimates of this value allow to verify the predictions of theoretical models for the optimal ways of synthesis of unknown nuclei. Some peculiarities in the separation and detection of ERs in experiments are briefly considered by the example of the Ra ERs produced in the 12 C+Pb reactions. The reliable cross sections for ERs produced in very asymmetric projectile-target combination, such as 12 C+Pb, are important for the empirical estimates of the fusion probability in more symmetric combinations leading to the same compound nuclei.
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institution Organización Europea para la Investigación Nuclear
language eng
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spelling cern-21153842019-09-30T06:29:59Zhttp://cds.cern.ch/record/2115384engSagaidak, R NFormation, separation and detection of evaporation residues produced in complete fusion reactionsNuclear Physics - ExperimentSome aspects of formation, separation and detection of evaporation residues (ERs) produced in complete fusion reactions induced by accelerated heavy ions are considered. These reactions allow to obtain heavy neutron-deficient nuclei and to study their properties. The statistical model analysis of the production cross sections for these nuclei obtained in a wide range of their neutron numbers allows to trace the changes in their macroscopic properties such as fission barriers. The fusion probability of massive projectile and target nuclei is of interest. Empirical estimates of this value allow to verify the predictions of theoretical models for the optimal ways of synthesis of unknown nuclei. Some peculiarities in the separation and detection of ERs in experiments are briefly considered by the example of the Ra ERs produced in the 12 C+Pb reactions. The reliable cross sections for ERs produced in very asymmetric projectile-target combination, such as 12 C+Pb, are important for the empirical estimates of the fusion probability in more symmetric combinations leading to the same compound nuclei.oai:cds.cern.ch:21153842015
spellingShingle Nuclear Physics - Experiment
Sagaidak, R N
Formation, separation and detection of evaporation residues produced in complete fusion reactions
title Formation, separation and detection of evaporation residues produced in complete fusion reactions
title_full Formation, separation and detection of evaporation residues produced in complete fusion reactions
title_fullStr Formation, separation and detection of evaporation residues produced in complete fusion reactions
title_full_unstemmed Formation, separation and detection of evaporation residues produced in complete fusion reactions
title_short Formation, separation and detection of evaporation residues produced in complete fusion reactions
title_sort formation, separation and detection of evaporation residues produced in complete fusion reactions
topic Nuclear Physics - Experiment
url http://cds.cern.ch/record/2115384
work_keys_str_mv AT sagaidakrn formationseparationanddetectionofevaporationresiduesproducedincompletefusionreactions