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Original Articles

Electron displacement damage in cobalt in a high voltage electron microscope

Pages 0965-0981 | Received 22 May 1970, Published online: 20 Aug 2006

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Read on this site (5)

P.V Ajda. (1978) Letter to the editor. Radiation Effects 36:1-2, pages 123-126.
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E.A. Kenik & T.E. Mitchell. (1975) Orientation dependence of the threshold displacement energy in copper and vanadium. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 32:4, pages 815-831.
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P.S. Bell & M.H. Lewis. (1974) Disordering of a vanadium monoxide superstructure by electron irradiation. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 29:5, pages 1175-1187.
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J.V. Sharp & D. Rumsby. (1973) Electron irradjation damage in magnesium oxide. Radiation Effects 17:1-2, pages 65-68.
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M.J. Goringe. (1971) A fourier approach to diffusion-nucleation calculations for thin foils. Radiation Effects 10:3, pages 169-174.
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Articles from other publishers (26)

Mo-Rigen He, Shuai Wang, Ke Jin, Hongbin Bei, Kazuhiro Yasuda, Syo Matsumura, Kenji Higashida & Ian M. Robertson. (2016) Enhanced damage resistance and novel defect structure of CrFeCoNi under in situ electron irradiation. Scripta Materialia 125, pages 5-9.
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Thirunavukkarasu Gnanavel & Günter Möbus. (2012) In situ synthesis of cobalt nanocrystal hierarchies in a transmission electron microscope. Journal of Nanoparticle Research 14:3.
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P. Jung. 1991. Atomic Defects in Metals. Atomic Defects in Metals 77 87 .
P. Jung. 1991. Atomic Defects in Metals. Atomic Defects in Metals 16 17 .
Wayne E. King, R. Benedek, K.L. Merkle & M. Meshii. (1987) Damage effects of high energy electrons on metals. Ultramicroscopy 23:3-4, pages 345-353.
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Peter Vajda. (1980) The study of point defects created in metal crystals by electron irradiation. Radiation Physics and Chemistry (1977) 16:1, pages 83-90.
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K. Urban. (1979) Radiation-induced processes in experiments carried out in-situ in the high-voltage electron microscope. Physica Status Solidi (a) 56:1, pages 157-168.
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M.J. Makin. (2020) Atom Displacement Radiation Damage in Electron Microscopes. Proceedings, annual meeting, Electron Microscopy Society of America 36:3, pages 330-342.
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A.S.A Karim, M.E Whitehead, M.H Loretto & R.E Smallman. (1978) Electron radiation damage in H.C.P. metals—I. The determination of the threshold displacement energy in Zn, Cd, Mg and Ti. Acta Metallurgica 26:6, pages 975-981.
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M.J. Makin, S.N. Buckley & G.P. Walters. (1977) The determination of the displacement energy in type 316 austenitic steel. Journal of Nuclear Materials 68:2, pages 161-167.
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Peter Vajda. (1977) Anisotropy of electron radiation damage in metal crystals. Reviews of Modern Physics 49:3, pages 481-521.
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P.J. Grundy, A. Ali & S.S. Nandra. (1977) Radiation damage in amorphous rare earth-transition metal films. Physica B+C 86-88, pages 758-760.
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S. Yu & H. Bichsel. (2006) A Mechanism for Reduced Radiation Damage. physica status solidi (b) 71:1, pages 231-236.
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Peter Jung. 1975. Atomic Collisions in Solids. Atomic Collisions in Solids 87 104 .
F. Maury, P. Vajda, A. Lucasson & P. Lucasson. (1973) Anisotropy of Radiation Damage in Electron-Bombarded Hexagonal Metals. II. A Model for Frenkel-Pair Formation in Single Crystals. Physical Review B 8:12, pages 5506-5518.
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F. Maury, P. Vajda, A. Lucasson & P. Lucasson. (1973) Anisotropy of Radiation Damage in Electron-Bombarded Hexagonal Metals. I. Damage Production and Recovery for Monocrystalline Cobalt, Zinc, and Cadmium. Physical Review B 8:12, pages 5496-5505.
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B L Eyre. (1973) Transmission electron microscope studies of point defect clusters in fcc and bcc metals. Journal of Physics F: Metal Physics 3:2, pages 422-470.
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E. A. Little & B. L. Eyre. (1973) The geometry of dislocation loops generated in α-iron by 1 MeV electron irradiation at 550°C. Journal of Microscopy 97:1-2, pages 107-111.
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T. E. Mitchell. 1973. Microstructural Analysis. Microstructural Analysis 125 152 .
Gopal Das & Terence E. Mitchell. (2020) Radiation Damage Study of Type 304 Austenitic Stainless Steel by High Voltage Electron Microscopy. Proceedings, annual meeting, Electron Microscopy Society of America 30, pages 678-679.
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Kensuke Shiraishi, Akimichi Hishinuma, Yoshio Katano & Tadami Taoka. (1972) Electron Irradiation Damage in Aluminum in a High Voltage Electron Microscope. Journal of the Physical Society of Japan 32:4, pages 964-971.
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Peter Jung & Werner Schilling. (1972) Anisotropy of the Threshold Energy for the Production of Frenkel Pairs in Tantalum. Physical Review B 5:6, pages 2046-2056.
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L. M. Howe & M. Rainville. (1971) Ion bombardment of H.C.P. and F.C.C. cobalt in the electron microscope. Physica Status Solidi (a) 7:1, pages 125-134.
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D.I.R. Norris. (1971) The use of the high voltage electron microscope to simulate fast neutron-induced void swelling in metals. Journal of Nuclear Materials 40:1, pages 66-76.
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A. Bourret. (1971) Irradiation damage in nickel and iron in a high-voltage electron microscope and threshold energy determination. Physica Status Solidi (a) 4:3, pages 813-825.
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S. A. Manthorpe & S. N. Buckley. 1969. VOIDS FORMED BY IRRADIATION OF REACTOR MATERIALS. VOIDS FORMED BY IRRADIATION OF REACTOR MATERIALS 239 246 .

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