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- W2003564158 abstract "Abstract Ion implantation in covalent bonded elemental semiconductors has reached a high level of understanding which is supported by a wealth of experimental data. This is reflected in the ability to accurately predict both implanted ion and damage profiles, and amorphization doses. Also, annealing of these implanted layers to achieve the desired properties has been well characterized. As one moves into the III–V compound semiconductors implantation becomes less well understood. Conflicting reports on implantation annealing results and amorphization doses are often found. To date, implantation in II–VI compounds remains a mystery at best. It is reasonable to assume that the materials themselves may be responsible for first order effects, such as amorphization thresholds and deep defect penetrations when compared to those predicted by damage calcuations. This paper discusses recent results obtained in selected II–VI binary compounds and the important ternary Hg 1−xCd xTe. The possibility of using ion implantation and thermal pulse annealing to enable accessing non-thermal equilibrium conditions for annealing is discussed." @default.
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- W2003564158 date "1985-03-01" @default.
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- W2003564158 title "Ion implantation in II–VI compound semiconductors" @default.
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- W2003564158 doi "https://doi.org/10.1016/0168-583x(85)90588-9" @default.
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