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Titlebook: Atomic Collisions in Solids; Volume 1 Sheldon Datz,B. R. Appleton,C. D. Moak Book 1975 Springer Science+Business Media New York 1975 Cross

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Directional Dependence of the Displacement Energy Threshold for a FCC Metalprimary knock-on atom is ejected from a lattice site. The displacement energy threshold for the [100] and [110] directions was about 22 eV and that for the [111] direction was 57 eV. A region of high displacement energy threshold was found in the interior of the stereographic triangle near the line
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Energy Dissipation by Random Collisions in Compound Target Materialsombarded with heavy energetic ions. With a view at radiation damage and sputtering in composite targets we calculate displacement efficiencies as a function of concentration, and particle fluxes as a function of energy and concentration for a few binary compounds. Pronounced deviations from stoichio
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On the Application of Boltzmann Transport Equations to Ion Bombardment of Solidsthese papers consider the spatial distribution of these particles when they have reached equilibrium with their surroundings. It is, however, of interest also to consider the state of the projectiles before they have reached this equilibrium, in order to obtain information about the speed with which
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Indication for an Ionization Damage Process in Light Ion Irradiation Damage in Silicong, lattice location of defects (through de-channeling cross section), and number of scattering centres per defect, indicate defect introduction rates for 300 keV H. and 275 keV He. in the ratio 1 to 2 which is similar to the electronic stopping power ratio but differs considerably from Kinchin and P
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Effects of Lattice Defects on Dechanneling and on Channeled-Particle Distributionechanneling for large surface concentration or large depth is the modification of the particle distribution in transverse energy and enhancement of dechanneling by lattice vibrations and electronic collisions. It is pointed out that this effect modifies considerably the depth profile of lattice defe
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https://doi.org/10.1007/978-1-4684-3117-9Cross section; atomic collision; collision; energy; hydrogen atom; reasoning; scattering; spectra
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