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  1. The non-degenerate core structure of a ½⟨111⟩ screw dislocation in bcc transition metals modelled using Finnis–Sinclair potentials: The necessary and sufficient conditions.S. Chiesa, M. R. Gilbert, S. L. Dudarev, P. M. Derlet & H. Van Swygenhoven - 2009 - Philosophical Magazine 89 (34-36):3235-3243.
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  • The interaction of a screw dislocation with point defects in bcc iron.Erin Hayward, Chaitanya Deo, Blas P. Uberuaga & Carlos N. Tomé - 2012 - Philosophical Magazine 92 (22):2759-2778.
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  • Ab initiomulti-string Frenkel–Kontorova model for a b =a/2[111] screw dislocation in bcc iron.Mark R. Gilbert & Sergei L. Dudarev - 2010 - Philosophical Magazine 90 (7-8):1035-1061.
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  • Atomic-scale modeling of interactions of helium, vacancies and helium–vacancy clusters with screw dislocations in alpha-iron.H. L. Heinisch, F. Gao & R. J. Kurtz - 2010 - Philosophical Magazine 90 (7-8):885-895.
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  • Core structure of screw dislocations in body-centred cubic metals: relation to symmetry and interatomic bonding.V. Vitek † - 2004 - Philosophical Magazine 84 (3-5):415-428.
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  • Directional versus central-force bonding in studies of the structure and glide of 1/2⟨111⟩ screw dislocations in bcc transition metals. [REVIEW]R. Gröger & V. Vitek - 2009 - Philosophical Magazine 89 (34-36):3163-3178.
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  • Generalized stacking-faults and screw-dislocation core-structure in bcc iron: A comparison betweenab initiocalculations and empirical potentials.Lisa Ventelon & F. Willaime - 2010 - Philosophical Magazine 90 (7-8):1063-1074.
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  • Peierls stress and Peierls energy of a 70.5° ⟨1 1 1⟩ dislocation in Mo.Gunther Schoeck - 2013 - Philosophical Magazine 93 (18):2363-2376.
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  • Expectable specific features of BCC crystal plastic flow and consistency with the Schmid law.L. T. Le & P. Franciosi - 2013 - Philosophical Magazine 93 (27):3589-3611.
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  • Nonplanar core structure of the screw dislocations in tantalum from the improved Peierls–Nabarro theory.Xiangsheng Hu & Shaofeng Wang - 2018 - Philosophical Magazine 98 (6):484-516.
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