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- W2084311325 abstract "Generally there are three main factors — doping (injection of impurity atoms into the surface layer of a sample), formation and transformation of radiation defects, and finally, phase transformations — which have an effect upon modification of the properties in solids exposed to ion beams. Intensive study of the first two factors carried out over the whole period of development of ion implantation, has given rise to numerous data on the regularities of physical processes and their mechanisms. As to the third factor, i.e. phase transformations, this has been much less studied and remains, in principle, at an early stage of serious investigation. In recent years great interest has been generated by the discovery of the unique properties of amorphous metallic alloys and the possibility of their production. While the prospects for such alloys suggest they will have wide application, their reproducible production engineering is rather complex. Ion implantation offers a promising technique for producing these materials providing the physical fundamentals for the formation of amorphous alloys by this method can be developed. Without claiming to give a complete analysis of the problem, we shall discuss here only some aspects of the mechanisms for structural phase transformations based mainly on the generalized original results reported by the Gorky State University. We shall consider the following types of structural phase transformations: amorphization and crystallization, synthesis of chemical compounds in semiconductors and dielectrics, transformations in metals." @default.
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- W2084311325 date "1983-05-01" @default.
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- W2084311325 title "Implantation phases in solids" @default.
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- W2084311325 doi "https://doi.org/10.1016/0167-5087(83)90883-9" @default.
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