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General theory of radiation damage
Range calculations and channeling D K Holmes
Dynamics of atomic displacement processes C Erginsoy
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absorption band acceptor activation energy alloys annealing approximation behaviour bleaching bombardment calculations cascade clusters collision concentration copper cross section crystal curve decrease defects density dependence depleted zones deuteron diffraction diffusion direction discussed dislocation lines divacancies effect electron equilibrium experimental experiments F band F centre fast neutron fission flux focusing foil formation fracture function germanium halogen increase interaction interstitial ionization irradiation isochronal kinetic knock-on lattice atom low temperature magnetic measurements mechanism metals migration mobility motion n-type negative ion vacancies neighbour neutron irradiation observed obtained optical pairs paramagnetic particles peak Phys plane position potential primary produced properties quenching radiation damage range reactor reciprocal lattice recovery region resistivity room temperature scattering shown in fig shows silicon solids specimens spectrum Stage steel structure surface thermal neutron tion trapped uranium valence band vector wave vector X-rays yield stress