16 found
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YuN Osetsky [10]Yu N. Osetsky [3]Yu Osetsky [2]Yuri Osetsky [1]
Yuri N. Osetsky [1]
  1.  31
    One-dimensional atomic transport by clusters of self-interstitial atoms in iron and copper.Yu Osetsky, D. Bacon, A. Serra, B. Singh & S. Golubov - 2003 - Philosophical Magazine 83 (1):61-91.
    Atomic-scale computer simulation has been used to study the thermally activated atomic transport of self-interstitial atoms in the form of planar clusters in pure Cu and f -Fe. There is strong evidence that such clusters are commonly formed in metals during irradiation with high-energy particles and play an important role in accumulation and spatial distribution of surviving defects. An extensive study of the mobility of SIA clusters containing two to 331 interstitials has been carried out using the molecular dynamics simulation (...)
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  2.  13
    Migration and directional change of interstitial clusters in α-Fe: searching for transition states by the dimer method.F. Gao, H. Heinisch, R. J. Kurtz, Yu N. Osetsky & R. G. Hoagland - 2005 - Philosophical Magazine 85 (4-7):619-627.
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  3.  9
    On the origin of large interstitial clusters in displacement cascades.A. F. Calder, D. J. Bacon, A. V. Barashev & YuN Osetsky - 2010 - Philosophical Magazine 90 (7-8):863-884.
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  4.  12
    Mesoscale thermodynamic analysis of atomic-scale dislocation–obstacle interactions simulated by molecular dynamics.G. Monnet, YuN Osetsky & D. J. Bacon - 2010 - Philosophical Magazine 90 (7-8):1001-1018.
  5.  14
    Dislocation dynamics modelling of dislocation–loop interactions in irradiated metals.Z. Rong, V. Mohles, D. J. Bacon * & Yu N. Osetsky - 2005 - Philosophical Magazine 85 (2-3):171-188.
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  6.  6
    Mechanisms of hardening due to copper precipitates in α-iron.D. J. Bacon & YuN Osetsky - 2009 - Philosophical Magazine 89 (34-36):3333-3349.
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  7.  7
    Dissociation of migrating particle from trap with long-range interaction field.A. V. Barashev, S. I. Golubov, YuN Osetsky & R. E. Stoller - 2010 - Philosophical Magazine 90 (7-8):907-921.
  8.  9
    Reaction kinetics of non-localised particle–trap complexes.A. V. Barashev, S. I. Golubov, YuN Osetsky & R. E. Stoller - 2010 - Philosophical Magazine 90 (7-8):897-906.
  9.  13
    Atomic-scale mechanisms of void hardening in bcc and fcc metals.YuN Osetsky & D. J. Bacon - 2010 - Philosophical Magazine 90 (7-8):945-961.
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  10.  11
    Elasticity to atomistics: Predictive modeling of defect behavior.Yuri Osetsky, Ron Scattergood, Anna Serra & Roger Stoller - 2010 - Philosophical Magazine 90 (7-8):803-804.
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  11.  19
    On the interaction between a vacancy and self-interstitial atom clusters in metals.M. A. Puigví, N. de Diego, A. Serra, Yu N. Osetsky & D. J. Bacon - 2007 - Philosophical Magazine 87 (23):3501-3517.
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  12.  14
    Dislocation nucleation and defect formation in copper by stepped spherical indenter.Chansun Shin, Yuri N. Osetsky & Roger E. Stoller - 2012 - Philosophical Magazine 92 (25-27):3158-3171.
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  13.  21
    Atomistic studies of helium defect properties in bcc iron: Comparison of He–Fe potentials.D. M. Stewart, YuN Osetsky, R. E. Stoller, S. I. Golubov, T. Seletskaia & P. J. Kamenski - 2010 - Philosophical Magazine 90 (7-8):935-944.
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  14.  8
    Implementation of a new Fe–He three-body interatomic potential for molecular dynamics simulations.R. E. Stoller, S. I. Golubov, P. J. Kamenski, T. Seletskaia & YuN Osetsky - 2010 - Philosophical Magazine 90 (7-8):923-934.
  15.  15
    Atomic scale modeling of {110} twist grain boundaries in α-iron: Structure and energy properties.J. B. Yang, Y. Nagai, M. Hasegawa & YuN Osetsky - 2010 - Philosophical Magazine 90 (7-8):991-1000.
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  16.  18
    Reactions between a 1/2⟨111⟩ screw dislocation and ⟨100⟩ interstitial dislocation loops in alpha-iron modelled at atomic scale. [REVIEW]D. Terentyev, D. J. Bacon & YuN Osetsky - 2010 - Philosophical Magazine 90 (7-8):1019-1033.
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