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Original Articles

The size, density and distribution of the clusters produced by Copper ions in Copper

Pages 1023-1038 | Received 19 Apr 1971, Published online: 27 May 2010

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Read on this site (15)

H. Fukushima, M.L. Jenkins & M.A. Kirk. (1997) On the determination of the nature of defect clusters produced by displacement cascades. Philosophical Magazine A 75:6, pages 1583-1602.
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D.K. Tappin, I.M. Robertson & M.A. Kirk. (1994) The role of electron-phonon coupling in the formation of clustered vacancy defects in elemental metals from heavy-ion irradiation. Philosophical Magazine A 70:3, pages 463-479.
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W.J. Phythian, C.A. English, D.J. Bacon & B.L. Eyre. (1990) Characterization of heavy-ion damage in ruthenium. II. Cascade collapse. Philosophical Magazine A 62:6, pages 617-632.
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C.A. English. (1990) Recoil effects in radiation damage. Radiation Effects and Defects in Solids 113:1-3, pages 15-28.
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R.J. Th. Lindgreen, D.O. Boerma & J. Th. M. De Hosson. (1983) A study of shallow and deep damage in Cu and Al after self-implantation. Radiation Effects 71:3-4, pages 289-314.
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A.Y. Stathopoulos, C.A. English, B.L. Eyre & P.B. Hirsch. (1981) The effect of alloying additions on collision cascades in heavy-ion irradiated copper solid solutions. Philosophical Magazine A 44:2, pages 309-332.
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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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M.O. Ruault, H. Bernas & J. Chaumont. (1979) Transmission electron microscopy study of damage by ion implantation in gold Evidence for a spike threshold. Philosophical Magazine A 39:6, pages 757-783.
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N. Igata, K. Shibata & S. Sato. (1979) Fim observation of defect clusters in tungsten irradiated with 200 KeV C+ ion. Radiation Effects 41:4, pages 251-260.
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M.L. Jenkins & M. Wilkens. (1976) Transmission electron microscopy studies of displacement cascades in Cu3Au. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 34:6, pages 1155-1167.
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M.L. Jenkins. (1974) A weak-beam electron microscopy analysis of defect clusters in heavy-ion irradiated silver and copper. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 29:4, pages 813-828.
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L.M. Howe. (1974) Irradiation hardening and annealing in copper at high neutron fluences. Radiation Effects 23:3, pages 181-195.
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E. Johnson & J.A. Ytterhus. (1973) Stereo electron microscopy of self-ion radiation damage in aluminium single crystals. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 28:3, pages 489-503.
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M.M. Wilson & P.B. Hirsch. (1972) The form of the defect clusters produced in copper by Cu+ ion irradiation. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 25:4, pages 983-991.
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Articles from other publishers (15)

N. Li, K. Hattar & A. Misra. (2013) In situ probing of the evolution of irradiation-induced defects in copper. Journal of Nuclear Materials 439:1-3, pages 185-191.
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N. Li, J. Wang, Y. Q. Wang, Y. Serruys, M. Nastasi & A. Misra. (2013) Incoherent twin boundary migration induced by ion irradiation in Cu. Journal of Applied Physics 113:2.
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M.L. Jenkins. (1994) Characterisation of radiation-damage microstructures by TEM. Journal of Nuclear Materials 216, pages 124-156.
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M.L. Jenkins, M.A. Kirk & W.J. Phythian. (1993) Experimental studies of cascade phenomena in metals. Journal of Nuclear Materials 205, pages 16-30.
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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 24 25 .
B.N. Singh & A.J.E. Foreman. (1988) Cascade stability and cavity nucleation. Journal of Nuclear Materials 155-157, pages 1258-1262.
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C. A. English & M. L. Jenkins. 1985. Treatise on Heavy-Ion Science. Treatise on Heavy-Ion Science 323 359 .
B. L. Eyre. 1983. Physics and Contemporary Needs. Physics and Contemporary Needs 43 107 .
G. Carter & W.A. Grant. (1982) Amorphisation of solids by ion implantation. Nuclear Instruments and Methods in Physics Research 199:1-2, pages 17-35.
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H.L. Heinisch. (1982) Effects of temperature in binary collision simulations of high-energy displacement cascades. Journal of Nuclear Materials 108-109, pages 62-66.
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H.L. Heinisch. (1981) Computer simulation of high energy recoils in FCC metals: Cascade shapes and sizes. Journal of Nuclear Materials 104, pages 1325-1329.
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L.D. Glowinski, J.M. Lanore, C. Fiche & Y. Adda. (1976) Etude de la formation des cavites dtrradiation dans le cuivre IV-etude des mecanismes. Journal of Nuclear Materials 61:1, pages 41-52.
Crossref
Manfred Wilkens. 1974. Applications of Ion Beams to Metals. Applications of Ion Beams to Metals 441 458 .
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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