Authors:
Y. Nagame Japan Atomic Energy Research Institute Tokai-mura 319-11 Ibaraki Japan

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I. Nishinaka Japan Atomic Energy Research Institute Tokai-mura 319-11 Ibaraki Japan

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Y. Zhao

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K. Tsukada Japan Atomic Energy Research Institute Tokai-mura 319-11 Ibaraki Japan

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S. Ichikawa Japan Atomic Energy Research Institute Tokai-mura 319-11 Ibaraki Japan

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Z. Qin Japan Atomic Energy Research Institute Tokai-mura 319-11 Ibaraki Japan

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H. Ikezoe Japan Atomic Energy Research Institute Tokai-mura 319-11 Ibaraki Japan

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Y. Oura Tokyo Metropolitan University Department of Chemistry Hachioji 192-03 Tokyo Japan

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K. Sueki Tokyo Metropolitan University Department of Chemistry Hachioji 192-03 Tokyo Japan

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H. Nakahara Tokyo Metropolitan University Department of Chemistry Hachioji 192-03 Tokyo Japan

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M. Tanikawa University of Tokyo Department of Chemistry Bunkyo-ku 113 Tokyo Japan

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T. Ohtsuki Tohoku University Laboratory of Nuclear Science Taihaku-ku 982 Sendai Japan

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S. Goto Niigata University Department of Chemistry 950-21 Niigata Japan

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H. Kudo Niigata University Department of Chemistry 950-21 Niigata Japan

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Y. Hamajima Kanazawa University Department of Chemistry 920-11 Kanazawa Japan

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K. Takamiya Osaka University Department of Chemistry Toyonaka 560 Osaka Japan

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K. Nakanishi Osaka University Department of Chemistry Toyonaka 560 Osaka Japan

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H. Baba Osaka University Department of Chemistry Toyonaka 560 Osaka Japan

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Abstract  

The correlation among the fission threshold energy, the scission configuration and the mass yield distribution has been studied in proton-induced fission of light actinides. It was found that there exist at least two fission paths from the threshold region to the scission. The elongated scission configuration is related with the fission process that goes over a higher threshold energy and results in a symmetric mass division mode, while the compact scission configuration with the process that experiences a lower threshold and ends up with an asymmetric mass division mode.

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Journal of Radionalytical and Nuclear Chemistry
Language English
Size A4
Year of
Foundation
1968
Volumes
per Year
1
Issues
per Year
12
Founder Akadémiai Kiadó
Founder's
Address
H-1117 Budapest, Hungary 1516 Budapest, PO Box 245.
Publisher Akadémiai Kiadó
Springer Nature Switzerland AG
Publisher's
Address
H-1117 Budapest, Hungary 1516 Budapest, PO Box 245.
CH-6330 Cham, Switzerland Gewerbestrasse 11.
Responsible
Publisher
Chief Executive Officer, Akadémiai Kiadó
ISSN 0236-5731 (Print)
ISSN 1588-2780 (Online)