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Original Articles

Simulations of the effects of 2-D interstitial diffusion on void lattice formation during irradiation

Pages 173-188 | Received 18 Aug 2005, Accepted 27 Sep 2005, Published online: 21 Feb 2007

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Read on this site (6)

V.I. Dubinko, S. Hu, Yu Li, C.H. Henager Jr & R.J. Kurtz. (2012) Dislocation vs. production bias revisited with account of radiation-induced emission bias. I. Void swelling under electron and light ion irradiation. Philosophical Magazine 92:33, pages 4113-4150.
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S. Z. Xu, Z. M. Hao, Y. Q. Su, W. J. Hu, Y. Yu & Q. Wan. (2012) Atomic collision cascades on void evolution in vanadium. Radiation Effects and Defects in Solids 167:1, pages 12-25.
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Articles from other publishers (22)

Daniele Salvato, Charlyne A. Smith, Tsvetoslav R. Pavlov, William A. Hanson, Kaustubh K. Bawane, Mukesh N. Bachhav, Brandon D. Miller, Tammy L. Trowbridge, Jian Gan, Jeffrey J. Giglio, Alexander J. Winston, Jody L. Henley, Adam B. Robinson, Dennis D. Keiser, Irina Y. Glagolenko, B. Ye, Z.-G. Mei, Laura M. Jamison, Gerard L. Hofman, Abdellatif M. Yacout, Sven Van den Berghe & Ann Leenaers. (2023) Contributions to the Mechanistic Understanding of the Microstructural Evolution in Irradiated U-Mo Dispersion Fuel. Journal of Nuclear Materials, pages 154789.
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Yongfeng Zhang. (2023) A review of void and gas bubble superlattices self-organization under irradiation. Frontiers in Nuclear Engineering 2.
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Larry K. Aagesen, Andrea Jokisaari, Daniel Schwen, Chao Jiang, Anton Schneider, Yongfeng Zhang, Cheng Sun & Jian Gan. (2022) A phase-field model for void and gas bubble superlattice formation in irradiated solids. Computational Materials Science 215, pages 111772.
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Anton Schneider, Yongfeng Zhang, Chao Jiang & Jian Gan. (2022) The effects of temperature and dose rate on the properties of irradiation induced void superlattices. Materialia 22, pages 101373.
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Yipeng Gao, Andrea M. Jokisaari, Larry Aagesen, Yongfeng Zhang, Miaomiao Jin, Chao Jiang, Sudipta Biswas, Cheng Sun & Jian Gan. (2022) The effect of elastic anisotropy on the symmetry selection of irradiation-induced void superlattices in cubic metals. Computational Materials Science 206, pages 111252.
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Cheng Sun. (2022) A short review of defect superlattice formation in metals and alloys under irradiation. Journal of Nuclear Materials 559, pages 153479.
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Yongfeng Zhang, Yipeng Gao, Cheng Sun, Daniel Schwen, Chao Jiang & Jian Gan. (2020) Symmetry breaking during defect self-organization under irradiation. Materials Theory 4:1.
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Cheng Sun, Yipeng Gao, David J. Sprouster, Yongfeng Zhang, Di Chen, Yongqiang Wang, Lynne E. Ecker & Jian Gan. (2020) Disordering of helium gas bubble superlattices in molybdenum under ion irradiation and thermal annealing. Journal of Nuclear Materials 539, pages 152315.
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R.W. Harrison, G. Greaves, H. Le, H. Bei, Y. Zhang & S.E. Donnelly. (2019) Chemical effects on He bubble superlattice formation in high entropy alloys. Current Opinion in Solid State and Materials Science 23:4, pages 100762.
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R.W. Harrison. (2019) On the use of ion beams to emulate the neutron irradiation behaviour of tungsten. Vacuum 160, pages 355-370.
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Yipeng Gao, Yongfeng Zhang, Daniel Schwen, Chao Jiang, Cheng Sun, Jian Gan & Xian-Ming Bai. (2018) Theoretical prediction and atomic kinetic Monte Carlo simulations of void superlattice self-organization under irradiation. Scientific Reports 8:1.
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M.A. Tunes, R.W. Harrison, G. Greaves, J.A. Hinks & S.E. Donnelly. (2017) Effect of He implantation on the microstructure of zircaloy-4 studied using in situ TEM. Journal of Nuclear Materials 493, pages 230-238.
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R. W. Harrison, G. Greaves, J. A. Hinks & S. E. Donnelly. (2017) Engineering self-organising helium bubble lattices in tungsten. Scientific Reports 7:1.
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S E Donnelly, G Greaves, J A Hinks, C J Pawley, M-F Beaufort, J-F Barbot, E Oliviero & R P Webb. (2014) In-situ TEM studies of ion-irradiation induced bubble development and mechanical deformation in model nuclear materials. MRS Proceedings 1645.
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Sergey V. Starikov, Zeke Insepov, Jeffrey Rest, Alexey Yu. Kuksin, Genri E. Norman, Vladimir V. Stegailov & Alexey V. Yanilkin. (2011) Radiation-induced damage and evolution of defects in Mo. Physical Review B 84:10.
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YuLan Li, ShenYang Hu, Xin Sun, Fei Gao, Charles H. HenagerJrJr & Mohammad Khaleel. (2011) Phase-field modeling of void evolution and swelling in materials under irradiation. Science China Physics, Mechanics and Astronomy 54:5, pages 856-865.
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Vladimir Dubinko. (2009) Breather mechanism of the void ordering in crystals under irradiation. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 267:18, pages 2976-2979.
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V.I. Dubinko, A.G. Guglya, E. Melnichenko & R. Vasilenko. (2009) Radiation-induced reduction in the void swelling. Journal of Nuclear Materials 385:2, pages 228-230.
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Fei Gao. 2010. Ion Beams in Nanoscience and Technology. Ion Beams in Nanoscience and Technology 107 127 .
Wai-Lun Chan, Robert S. Averback & Yinon Ashkenazy. (2008) Anisotropic diffusion of point defects in metals under a biaxial stress field simulation and theory. Journal of Applied Physics 104:2.
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Marshall Stoneham. (2007) How soft materials control harder ones: routes to bioorganization. Reports on Progress in Physics 70:7, pages 1055-1097.
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V.I. Dubinko & V.F. Klepikov. (2007) The influence of non-equilibrium fluctuations on radiation damage and recovery of metals under irradiation. Journal of Nuclear Materials 362:2-3, pages 146-151.
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