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Original Articles

Nuclei of strain in a cubic material

Pages 833-851 | Received 05 Dec 1969, Published online: 13 Sep 2006

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A.Y. Stathopoulos. (1981) The study of heavy-ion damage in pure copper. Philosophical Magazine A 44:2, pages 285-308.
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C.A. English, B.L. Eyre & J. Summers. (1976) Influence of irradiation temperature on self-ion damage in copper. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 34:4, pages 603-614.
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H.P. Degischer. (1972) Diffraction contrast from coherent precipitates in elastically-anisotropic materials. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 26:5, pages 1137-1151.
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ElizabethH. Yoffe. (1972) The image of a shear loop in a cubic crystal. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 25:4, pages 935-945.
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D.M. Maher, M.H. Loretto & A.F. Bartlett. (1971) Neutron irradiation damage in molybdenum. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 24:187, pages 181-194.
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K.G. McIntyre, L.M. Brown & J.A. Eades. (1970) The effect of elastic anistropy on the electron microscope images of small defect clusters in neutron irradiated copper and gold. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 21:172, pages 853-855.
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Articles from other publishers (19)

R.O. Williams. (1984) The calculation of coherent phase equilibria. Calphad 8:1, pages 1-14.
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S. M. Ohr. (1979) Black—white contrast of dislocation loops in anisotropic cubic crystals. Physica Status Solidi (a) 56:2, pages 527-530.
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S.M. Ohr. (1978) Electron microscope studies of the nature of defect clusters in copper. Journal of Nuclear Materials 69-70, pages 830-831.
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S.M. Ohr. (2020) Image contrast of dislocation in anisotropic cubic crystals. Proceedings, annual meeting, Electron Microscopy Society of America 36:1, pages 326-327.
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M. WILKENS. 1978. Diffraction and Imaging Techniques in Material Science. Diffraction and Imaging Techniques in Material Science 185 215 .
B L Eyre, R C Perrin & D M Maher. (1977) Electron microscope image contrast from small dislocation loops. II. Application of theoretical predictions to defect analysis in irradiated metals. Journal of Physics F: Metal Physics 7:8, pages 1371-1382.
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B L Eyre, R C Perrin & D M Maher. (1977) Electron microscope image contrast from small dislocation loops. I. Theoretical predictions for edge dislocation loops in a BCC crystal. Journal of Physics F: Metal Physics 7:8, pages 1359-1369.
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S. M. Ohr. (1976) Direction of the black-white contrast of dislocation loops. Physica Status Solidi (a) 38:2, pages 553-557.
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D.J Morrison-Smith, M.S Paterson & B.E Hobbs. (1976) An electron microscope study of plastic deformation in single crystals of synthetic quartz. Tectonophysics 33:1-2, pages 43-79.
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J.M. Silcock. (1976) Precipitation in a 16Cr 16Ni steel containing zirconium. Scripta Metallurgica 10:5, pages 367-374.
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D. Lepski. (2006) Methoden zur Interpretation des Elektronenbeugungskontrastes von Kristallbaufehlern mit Hilfe der dynamischen Kontrasttheorie. Kristall und Technik 10:9, pages 905-931.
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S. Nakahara & D. M. Maher. (2020) Application of Modified Bloch Waves to Image Analysis of Extended Linear Defects. Proceedings, annual meeting, Electron Microscopy Society of America 32, pages 402-403.
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D. Lepski. (1973) Exact strain fields for inclusions in elastically anisotropic media for diffraction contrast calculations. Physica Status Solidi (a) 16:1, pages K43-K46.
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D. Schulze. (2006) Kontrastsimulationen für die Transmissionselektronenmikroskopie und ‐beugung mit elektronischen Rechenmaschinen. Kristall und Technik 8:5, pages 545-566.
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S. M. Ohr. (1972) Anisotropic Elasticity of a Prismatic Dislocation Loop in a Hexagonal Crystal. Journal of Applied Physics 43:4, pages 1361-1365.
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M. Wilkens & M. Rühle. (2006) Black–white contrast figures from small dislocation loops. I. Analytical first order perturbation solution. physica status solidi (b) 49:2, pages 749-760.
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K. Saito, R. O. Bozkurt & T. Mura. (1972) Dislocation Stresses in a Thin Film Due to the Periodic Distributions of Dislocations. Journal of Applied Physics 43:1, pages 182-188.
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M.J. GORINGE. 1971. Electron Microscopy in Material Science. Electron Microscopy in Material Science 463 489 .
L.M. BROWN. 1971. Electron Microscopy in Material Science. Electron Microscopy in Material Science 361 387 .

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