Properties of236U at the third-minimum deformation

Research output: Chapter in Book/Report/Conference proceedingChapter

Abstract

The fission probability and the angular distribution of the fission fragments has been measured for the 235U(d, pf) 236U reaction at an excitation energy slightly below the top of the fission barrier as a function of the excitation energy in 236U. A strong resonance was observed at E* = 5.45 MeV. The fine structure of the resonance was measured and interpreted as a hyperdeformed rotational band.

Original languageEnglish
Title of host publicationActa Physica Polonica B
Pages37-40
Number of pages4
Volume28
Edition1-2
Publication statusPublished - 1997

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fission
excitation
angular distribution
fine structure
fragments
energy

ASJC Scopus subject areas

  • Physics and Astronomy(all)

Cite this

Csatlós, M., Krasznahorkay, A., Hunyadi, M., Gulyás, J., Máté, Z., Molnár, J., ... Végh, J. (1997). Properties of236U at the third-minimum deformation. In Acta Physica Polonica B (1-2 ed., Vol. 28, pp. 37-40)

Properties of236U at the third-minimum deformation. / Csatlós, M.; Krasznahorkay, A.; Hunyadi, M.; Gulyás, J.; Máté, Z.; Molnár, J.; Tímár, J.; Végh, J.

Acta Physica Polonica B. Vol. 28 1-2. ed. 1997. p. 37-40.

Research output: Chapter in Book/Report/Conference proceedingChapter

Csatlós, M, Krasznahorkay, A, Hunyadi, M, Gulyás, J, Máté, Z, Molnár, J, Tímár, J & Végh, J 1997, Properties of236U at the third-minimum deformation. in Acta Physica Polonica B. 1-2 edn, vol. 28, pp. 37-40.
Csatlós M, Krasznahorkay A, Hunyadi M, Gulyás J, Máté Z, Molnár J et al. Properties of236U at the third-minimum deformation. In Acta Physica Polonica B. 1-2 ed. Vol. 28. 1997. p. 37-40
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AU - Tímár, J.

AU - Végh, J.

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AB - The fission probability and the angular distribution of the fission fragments has been measured for the 235U(d, pf) 236U reaction at an excitation energy slightly below the top of the fission barrier as a function of the excitation energy in 236U. A strong resonance was observed at E* = 5.45 MeV. The fine structure of the resonance was measured and interpreted as a hyperdeformed rotational band.

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