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ORIGINAL PAPER

Multi-parametric Measurement of Prompt Neutrons and Fission Fragments for 233U(nth, f)

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Pages 631-642 | Received 06 Jan 1998, Published online: 15 Mar 2012

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Patrick Jaffke. (2018) Identifying Inconsistencies in Fission Product Yield Evaluations with Prompt Neutron Emission. Nuclear Science and Engineering 190:3, pages 258-270.
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Atsushi Matsumoto, Hiroshi Taninaka, Kengo Hashimoto & Takaaki Ohsawa. (2012) Monte Carlo simulation of prompt neutron emission during acceleration in fission. Journal of Nuclear Science and Technology 49:8, pages 782-792.
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Chikafumi TSUCHIYA, Yoshihiro NAKAGOME, Hajimu YAMANA, Hirotake MORIYAMA, Katsuhisa NISHIO, Ikuo KANNO, Kazuo SHIN & Itsuro KIMURA. (2000) Simultaneous Measurement of Prompt Neutrons and Fission Fragments for 239Pu(n,f). Journal of Nuclear Science and Technology 37:11, pages 941-948.
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Modesto Montoya. 2023. Nuclear Fission - From Fundamentals to Applications [Working Title]. Nuclear Fission - From Fundamentals to Applications [Working Title].
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Katsuhisa Nishio. 2020. Handbook of Nuclear Physics. Handbook of Nuclear Physics 1 43 .
Li-Le Liu, Xi-Zhen Wu, Yong-Jing Chen, Cai-Wan Shen, Zhu-Xia Li, Zhi-Gang Ge & Neng-Chuan Shu. (2022) Influence of the neck parameter on the fission dynamics within the two-center shell model parametrization*. Chinese Physics C 46:12, pages 124101.
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P Mehdipour Kaldiani & M Jamiati. (2022) Total excitation energy distribution for neutron-induced fission of thorium isotopes. Pramana 96:3.
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Jounghwa Lee, Young-Ouk Lee, Tae-Sun Park, Peter Schillebeeckx & Seung-Woo Hong. (2022) Semi-empirical model to determine pre- and post-neutron fission product yields and neutron multiplicity. Journal of the Korean Physical Society 80:10, pages 953-963.
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A. Chebboubi, G. Kessedjian, O. Serot, H. Faust, U. Köster, O. Litaize, C. Sage, A. Blanc, D. Bernard, A. Letourneau, T. Materna, O. Méplan, P. Mutti, M. Rapala & M. Ramdhane. (2021) Measurements of $$^{233}$$U$$(\text {n}_{\text {th}},\text {f})$$ fission product mass yields with the LOHENGRIN recoil mass spectrometer. The European Physical Journal A 57:12.
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J.-F. Martin, J. Taïeb, G. Boutoux, A. Chatillon, T. Gorbinet, E. Pellereau, L. Audouin, A. Heinz, H. Alvarez-Pol, Y. Ayyad, G. Bélier, J. Benlliure, M. Caamaño, E. Casarejos, D. Cortina-Gil, A. Ebran, F. Farget, B. Fernández-Domínguez, L. Grente, H. T. Johansson, B. Jurado, A. Kelić-Heil, N. Kurz, B. Laurent, C. Nociforo, C. Paradela, S. Pietri, A. Prochazka, J. L. Rodríguez-Sánchez, D. Rossi, H. Simon, L. Tassan-Got, J. Vargas, B. Voss & H. Weick. (2021) Fission-fragment yields and prompt-neutron multiplicity for Coulomb-induced fission of and . Physical Review C 104:4.
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Marc Verriere & Matthew Ryan Mumpower. (2021) Improvements to the macroscopic-microscopic approach of nuclear fission. Physical Review C 103:3.
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Payam Mehdipour Kaldiani. (2021) Systematic Approach to Calculate the Total Kinetic Energy Distribution of Actinides for the Photofission Phenomenon. Physics of Atomic Nuclei 84:1, pages 11-17.
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Anabella Tudora. (2020) Inclusion of sequential emission into the most probable fragmentation approach (Los Alamos model) and its validation. The European Physical Journal A 56:6.
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M. Montoya. (2019) Behavior of the average prompt neutron multiplicity as a function of post-neutron fragment mass in correlation with the pre-neutron fragment mass distribution in thermal neutron induced fission of 235U and 233U. Results in Physics 14, pages 102356.
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I. S. Guseva, A. M. Gagarski, V. E. Sokolov, G. A. Petrov, A. S. Vorobyev, G. V. Val’sky & T. A. Zavarukhina. (2018) Detailed Investigations of Neutron–Neutron Angular Correlations in Slow-Neutron-Induced Fission of 233U, 235U, and 239Pu. Physics of Atomic Nuclei 81:4, pages 447-454.
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A N Andreyev, K Nishio & K-H Schmidt. (2018) Nuclear fission: a review of experimental advances and phenomenology. Reports on Progress in Physics 81:1, pages 016301.
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Katsuhisa Nishio & Satoshi Chiba. (2017) Cutting-edge studies on Nuclear Data for Continuous and Emerging Need(3)核データ研究の最前線 〜たゆまざる真値の追及,そして新たなニーズへ応える為に〜. Journal of the Atomic Energy Society of Japan 59:12, pages 717-721.
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Taofeng Wang, Guangwu Li, Liping Zhu, Qinghua Meng, Liming Wang, Hongyin Han, Wenhui Zhang, Haihong Xia, Long Hou, Ramona Vogt & Jørgen Randrup. (2016) Correlations of neutron multiplicity and -ray multiplicity with fragment mass and total kinetic energy in spontaneous fission of . Physical Review C 93:1.
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A. Chebboubi, G. Kessedjian, C. Sage, D. Bernard, A. Blanc, H. Faust, U. Köster, O. Litaize, P. Mutti & O. Serot. (2016) 233 U mass yield measurements around and within the symmetry region with the ILL Lohengrin spectrometer . EPJ Web of Conferences 111, pages 08002.
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Nikolay KornilovNikolay Kornilov. 2015. Fission Neutrons. Fission Neutrons 77 112 .
Yong-Jing Chen, Min Jia, Ting-Jin Liu & Neng-Chuan Shu. (2014) Calculation of prompt fission neutron spectrum for 233 U(n, f) reaction by the semi-empirical method . Chinese Physics C 38:5, pages 054001.
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M. Mirea. (2013) Intrinsic energy partition in fission. EPJ Web of Conferences 42, pages 06003.
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M. Mirea. (2013) Energy Partition in Fission within a Microscopic Approach. Physics Procedia 47, pages 53-59.
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M. Mirea. (2012) Microscopic description of energy partition in fission fragments. Physics Letters B 717:1-3, pages 252-256.
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C Morariu, A Tudora, F-J Hambsch, S Oberstedt & C Manailescu. (2012) Modelling of the total excitation energy partition including fragment deformation and excitation energies at scission. Journal of Physics G: Nuclear and Particle Physics 39:5, pages 055103.
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