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Quasifission and difference in formation of evaporation residues in the (16)O+(184)W and (19)F+(181)Ta reactions (CROSBI ID 253056)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Nasirov, AK ; Mandaglio, G ; Manganaro, Marina ; Muminov, AI ; Fazio, G ; Giardina, G Quasifission and difference in formation of evaporation residues in the (16)O+(184)W and (19)F+(181)Ta reactions // Physics letters. B, 686 (2010), 1; 72-77. doi: 10.1016/j.physletb.2010.02.018

Podaci o odgovornosti

Nasirov, AK ; Mandaglio, G ; Manganaro, Marina ; Muminov, AI ; Fazio, G ; Giardina, G

engleski

Quasifission and difference in formation of evaporation residues in the (16)O+(184)W and (19)F+(181)Ta reactions

The role of the entrance channel has been studied to ascertain a cause of the observed difference between the evaporation residue cross sections normalized to the fusion cross sections in the (19)F + (181)Ta and (16)O + (184)W reactions at high excitation energies The theoretical analysis performed in the framework of the dinuclear system and advanced statistical models showed that the more intense yield of evaporation residues in the (16)O + (184)W reaction in comparison with that in the (19)F + (181)Ta reaction was explained by the large capture and fusion cross sections in the former reaction, which is in agreement with the experimental data. The observed decrease in the evaporation residue cross section normalized to the fusion cross section in the (19)F + (181)Ta reaction, in comparison with one in the (16)O + (184)W reaction at large excitation energies, is caused by the unintentional inclusion of the quasifission and fast fission contributions in the fissionlike fragment yields that were used in reconstructing the experimental fusion cross section in the normalizing procedure The range of the angular momentum distribution for both systems was similar, but the partial cross sections are different, showing the presence of a difference in file hindrance to complete fusion in both reactions. (C) 2010 Elsevier B V All rights reserved

Complete fusion ; Angular momentum distribution ; Evaporation residue ; Fusion-fission ; Quasifission ; Fast fission

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Podaci o izdanju

686 (1)

2010.

72-77

objavljeno

0370-2693

1873-2445

10.1016/j.physletb.2010.02.018

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Fizika

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