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  1. Dislocation density-based constitutive model for the mechanical behaviour of irradiated Cu.A. Arsenlis §, B. D. Wirth & M. Rhee - 2004 - Philosophical Magazine 84 (34):3617-3635.
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  • Irradiation-induced stacking fault tetrahedra in fcc metals.R. Schäublin, Z. Yao, N. Baluc & M. Victoria - 2005 - Philosophical Magazine 85 (4-7):769-777.
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  • Atomic-scale study of dislocation–stacking fault tetrahedron interactions. Part I: mechanisms.Y. N. Osetsky, D. Rodney & D. J. Bacon - 2006 - Philosophical Magazine 86 (16):2295-2313.
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  • Direct observations of defects in quenched gold.J. Silcox & P. B. Hirsch - 1959 - Philosophical Magazine 4 (37):72-89.
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  • In-situ transmission electron microscopy observations and molecular dynamics simulations of dislocation-defect interactions in ion-irradiated copper.J. Robach, I. Robertson, B. Wirth & A. Arsenlis - 2003 - Philosophical Magazine 83 (8):955-967.
    An in-situ transmission electron microscopy straining technique has been used to investigate the dynamics of dislocation-defect interactions in ion-irradiated copper and the subsequent formation of defect-free channels. Defect removal frequently required interaction with multiple dislocations, although screw dislocations were more efficient at annihilating defects than edge dislocations were. The defect pinning strength was determined from the dislocation curvature prior to breakaway and exhibited values ranging from 15 to 175 MPa. Pre-existing dislocations percolated through the defect field but did not show (...)
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  • Atomic-scale plasticity in the presence of Frank loops.T. Nogaret, C. Robertson & D. Rodney - 2007 - Philosophical Magazine 87 (6):945-966.
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