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Fission Yields of Minor Actinides at Low Energy Through Multi-nucleon Transfer Reactions of 238U on 12C

D. Ramos ; C. Rodriguez-Tajes ; M. Caamano ; F. Farget ; L. Audouin ; J. Benlliure ; E. Casarejos ; E. Clement ; D. Cortina ; O. Delaune ; X. Derkx ; A. Dijon ; D. Dore ; B. Fernandez-Dominguez ; G. de France ; Andreas Martin Heinz (Institutionen för fundamental fysik) ; B. Jacquot ; A. Navin ; C. Paradela ; M. Rejmund ; T. Roger ; M. D. Salsac ; C. Schmitt
Acta Physica Polonica B (0587-4254). Vol. 46 (2015), 3, p. 443-446.
[Artikel, refereegranskad vetenskaplig]

First preliminary results of fragments distribution as a function of the excitation energy for different fissioning systems from U to Cm and Cf-250 are presented. A new method based on inverse kinematics to study transfer-induced fission of minor actinides was carried out in GANIL in 2008, and again in 2011. In these experiments, a U-238 beam at 6.1 A MeV impinged on a carbon target to produce fissioning systems by multi-nucleon transfer reactions, resulting in the first experiments accessing the full identification of a collection of fissioning systems and their corresponding fission fragments distribution. The excitation energy is deduced from the detection of the recoil nucleus in an angular DE-E stripped silicon telescope, and the identification of the fragments is made possible by the VAMOS spectrometer.

Denna post skapades 2015-06-16. Senast ändrad 2015-06-16.
CPL Pubid: 218441


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Institutionen för fundamental fysik (2005-2015)



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