Development of a Calculation Code System for Evaluation of Deuteron Nuclear Data

Shinsuke Nakayama, Shouhei Araki, Yukinobu Watanabe, Osamu Iwamoto, Tao Ye, Kazuyuki Ogata

研究成果: ジャーナルへの寄稿Conference article

10 引用 (Scopus)

抄録

A calculation code system for evaluation of deuteron nuclear data is extended so that the stripping reaction to bound states in the residual nucleus can be taken into account properly using a conventional zero-range DWBA approach. The code system is applied to deuteron induced-reactions on 27Al for incident energies up to 100 MeV. It is found that the spectroscopic factors derived from the present DWBA analysis have incident energy dependence. The calculation using the extended code system reproduces experimental double-differential cross sections for the 27Al(d,xp) reaction at 25.5, 56, and 100 MeV, and production cross sections of 28Al in the incident energy range from the threshold to 20 MeV.

元の言語英語
ページ(範囲)219-227
ページ数9
ジャーナルEnergy Procedia
71
DOI
出版物ステータス出版済み - 5 1 2015
イベント4th International Symposium on Innovative Nuclear Energy Systems, INES 2013 - Tokyo, 日本
継続期間: 11 6 201311 8 2013

All Science Journal Classification (ASJC) codes

  • Energy(all)

これを引用

Development of a Calculation Code System for Evaluation of Deuteron Nuclear Data. / Nakayama, Shinsuke; Araki, Shouhei; Watanabe, Yukinobu; Iwamoto, Osamu; Ye, Tao; Ogata, Kazuyuki.

:: Energy Procedia, 巻 71, 01.05.2015, p. 219-227.

研究成果: ジャーナルへの寄稿Conference article

Nakayama, Shinsuke ; Araki, Shouhei ; Watanabe, Yukinobu ; Iwamoto, Osamu ; Ye, Tao ; Ogata, Kazuyuki. / Development of a Calculation Code System for Evaluation of Deuteron Nuclear Data. :: Energy Procedia. 2015 ; 巻 71. pp. 219-227.
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AB - A calculation code system for evaluation of deuteron nuclear data is extended so that the stripping reaction to bound states in the residual nucleus can be taken into account properly using a conventional zero-range DWBA approach. The code system is applied to deuteron induced-reactions on 27Al for incident energies up to 100 MeV. It is found that the spectroscopic factors derived from the present DWBA analysis have incident energy dependence. The calculation using the extended code system reproduces experimental double-differential cross sections for the 27Al(d,xp) reaction at 25.5, 56, and 100 MeV, and production cross sections of 28Al in the incident energy range from the threshold to 20 MeV.

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