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Original Articles

Simulations of the effects of 1-d interstitial diffusion on void lattice formation during irradiation

Pages 1177-1190 | Received 22 Dec 2003, Accepted 15 Oct 2004, Published online: 19 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

A.V. Barashev & S.I. Golubov. (2010) On the onset of void ordering in metals under neutron or heavy-ion irradiation. Philosophical Magazine 90:13, pages 1787-1797.
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A. A. Semenov, C. H. Woo & W. Frank. (2005) Comments on Monte Carlo simulations of void-lattice formation. Philosophical Magazine Letters 85:11, pages 563-568.
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Articles from other publishers (18)

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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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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J. Wang, Q. Hou & B.L. Zhang. (2021) Migration behavior of self-interstitial defects in tungsten and iron. Solid State Communications 325, pages 114158.
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Yipeng Gao, Yongfeng Zhang, Daniel Schwen, Chao Jiang & Jian Gan. (2019) Bifurcation and Pattern Symmetry Selection in Reaction-Diffusion Systems with Kinetic Anisotropy. Scientific Reports 9:1.
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S.V. Starikov, L.N. Kolotova, A.Yu. Kuksin, D.E. Smirnova & V.I. Tseplyaev. (2018) Atomistic simulation of cubic and tetragonal phases of U-Mo alloy: Structure and thermodynamic properties. Journal of Nuclear Materials 499, pages 451-463.
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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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Shenyang Hu, Douglas E. Burkes, Curt A. Lavender, David J. Senor, Wahyu Setyawan & Zhijie Xu. (2016) Formation mechanism of gas bubble superlattice in UMo metal fuels: Phase-field modeling investigation. Journal of Nuclear Materials 479, pages 202-215.
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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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Jaime Marian & Tuan L. Hoang. (2012) Modeling fast neutron irradiation damage accumulation in tungsten. Journal of Nuclear Materials 429:1-3, pages 293-297.
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Long Chen, YueLin Liu, HongBo Zhou, Shuo Jin, Ying Zhang & GuangHong Lu. (2012) Stability and diffusion properties of self-interstitial atoms in tungsten: a first-principles investigation. Science China Physics, Mechanics and Astronomy 55:4, pages 614-618.
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V.I. Dubinko, A.G. Guglya & S.E. Donnelly. (2011) Radiation-induced formation, annealing and ordering of voids in crystals: Theory and experiment. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 269:14, pages 1634-1639.
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Vladimir Dubinko. (2011) Mechanisms of recovery of radiation damage based on the interaction of quodons with crystal defects. Discrete & Continuous Dynamical Systems - S 4:5, pages 1119-1128.
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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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A.A. Semenov & C.H. Woo. (2008) Non-linear dynamics of microstructure evolution and hyper void-lattice formation. Journal of Nuclear Materials 382:2-3, pages 96-102.
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A. A. Semenov, C. H. Woo & W. Frank. (2008) Diffusion anisotropy and void development under cascade irradiation. Applied Physics A 93:2, pages 365-377.
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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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A.A. Semenov & C.H. Woo. (2006) Effect of one-dimensional diffusion on void nucleation. Applied Physics A 84:3, pages 261-266.
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A. A. Semenov & C. H. Woo. (2006) Void lattice formation as a nonequilibrium phase transition. Physical Review B 74:2.
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