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<p><strong>Evaporation residue cross section to synthesize superheavy element Z=119</strong></p>

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Title Statement <p><strong>Evaporation residue cross section to synthesize superheavy element Z=119</strong></p>
 
Added Entry - Uncontrolled Name Manjunatha, H C ; Department of Physics, Government College for Women, Kolar 563 101, India
Sridhar, K N
Sowmya, N
 
Uncontrolled Index Term Superheavy nuclei, Evaporation residue, Fusion barrier
 
Summary, etc. <p class="Abstract">The evaporation-residue cross section <em>σ</em><sub>EVR</sub> of fusion reactions depend on the projectile-target combinations and the incident energy. A detail theoretical study is useful before the synthesis of more isotopes of super heavy nuclei Z=119. We have studied the evaporation-residue cross sections for possible projectile-target combinations to synthesis the superheavy nuclei with Z=119. We have studied the dependence of evaporation residue cross section with that of mass number of the target, product of atomic numbers of projectile and target (Z<sub>1</sub>Z<sub>2</sub>), fusion barrier height (V<sub>b</sub>) and fusion barrier width (R<sub>b</sub>).  After the detailed analysis, we have identified the most probable projectile-target combinations. The identified projectile-target combinations to synthesis superheavy nuclei <sup>295-296</sup>119 are <sup>45</sup>Sc+<sup>250,251</sup>Cf. We hope that our predictions guide the future experiments in the synthesis of super heavy nuclei <sup>295-296</sup>119.</p>
 
Publication, Distribution, Etc. Indian Journal of Pure & Applied Physics (IJPAP)
2022-10-20 10:39:34
 
Electronic Location and Access application/pdf
http://op.niscair.res.in/index.php/IJPAP/article/view/67665
 
Data Source Entry Indian Journal of Pure & Applied Physics (IJPAP); ##issue.vol## 58, ##issue.no## 5 (2020): Indian Journal of Pure & Applied Physics
 
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