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Titlebook: Surface Engineering; Surface Modification Ram Kossowsky,Subhash C. Singhal Book 1984 Martinus Nijhoff Publishers, Dordrecht 1984 alloy.cera

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Optical Waveguide Formation in Quartz by Ion Implantationy isolates the surface crystal from the bulk. During implantation there are changes in the luminescence of the quartz which parallel the amorphisation..The present study has measured the efficiency of the process as a function of ion energy. Some initial measurements of annealing will be reported.
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Physics of Ion Implantation (Ion Cascade Processes and Physical State of the Implanted Solid)rstanding of these processes and the resulting microstructural modifications is invaluable in utilizing ion implantation to “engineer”surfaces through the controlled modification of surface properties. This lecture summarizes current theoretical and experimental understanding in these areas. Basic i
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Lattice Location Studies on Hafnium, Thallium and Lead Implanted Magnesium Single Crystalsechnique with the 1.2 MeV .He. beam of the Van de Graaff - accelerator of LNETI – Sacavém. The results showed complete substitutionality for the hafnium implantation.This position was not affected by annealing at 300°C. For lead and thallium it was found that only a fraction of the implanted ions oc
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Ion Implantation and Optical Properties the surface layers of solids. This tutorial review will range over many of the potential applications of ion beam effects in insulators. The implantation phenomena encompass diagnostic measurements, isotopic control of impurities, radiation damage and new technological devices..The familiar uses of
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Optical Waveguide Formation in Quartz by Ion Implantationn of crystalline quartz reduces the refractive index by some 5%. To preserve the crystalline properties and fabricate planar optical waveguides we have used the technique of energetic light ion implantation of the quartz. This generates an amorphous layer at the end of the ion range which effectivel
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