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Radiation Effects and Defects in Solids
Incorporating Plasma Science and Plasma Technology
Volume 145, 1998 - Issue 1-2
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Section B: Crystal lattice defects and amorphous materials

Identification of the nature of neutron-irradiation-induced defects in copper by means of electron irradiation

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Pages 143-167 | Received 24 Jul 1997, Published online: 19 Aug 2006

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Michio Kiritani, Takashi Sota, Tamae Tawara, Hiroshi Arimura, Kazufumi Yasunaga, Yoshitaka Matsukawa & Masao Komatsu. (2002) Defect Structures Introduced in FCC Metals by High-speed Deformation. Radiation Effects and Defects in Solids 157:1-2, pages 53-74.
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Michio Kiritani. (1999) Design of experiments on production and reaction of point defects. Radiation Effects and Defects in Solids 148:1-4, pages 233-267.
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Articles from other publishers (5)

P. Horodek, J. Dryzek & V.A. Skuratov. (2017) Positron annihilation study of defects in copper irradiated with swift Xe 26+ ions. Vacuum 138, pages 15-21.
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Y. Satoh, Y. Matsuda, T. Yoshiie, M. Kawai, H. Matsumura, H. Iwase, H. Abe, S.W. Kim & T. Matsunaga. (2013) Defect clusters formed from large collision cascades in fcc metals irradiated with spallation neutrons. Journal of Nuclear Materials 442:1-3, pages S768-S772.
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S.J Zinkle & Y Matsukawa. (2004) Observation and analysis of defect cluster production and interactions with dislocations. Journal of Nuclear Materials 329-333, pages 88-96.
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Y. Satoh, T. Yoshiie, H. Mori & M. Kiritani. (2004) Formation of stacking-fault tetrahedra in aluminum irradiated with high-energy particles at low-temperatures. Physical Review B 69:9.
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Y. Matsukawa, K. Yasunaga, M. Komatsu & M. Kiritani. (2003) Dynamic observation of dislocation-free deformation process in Al, Cu, and Ni thin foils. Materials Science and Engineering: A 350:1-2, pages 17-24.
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