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Radiation Damage Theory
Radiation Damage in Semiconductors
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absorption activation energy annealing Appl approximation atoms band binding energy bleaching bombardment Burgers vector calculated clusters coefficient collision concentration conduction band copper cross-section crowdion crystal curve decrease défauts deformation density diffraction diffusion discussed displaced atoms distance dose effect electrical resistivity electron equation equilibrium experimental experiments F-band F-center fission fragments flux formation Frenkel defects Frenkel pair germanium heat impurity increase interaction interstitial ionization irradiation Journ kinetic energy lithium loops low temperatures mean free path measurements metals migration NaCl neutron observed obtained optical particles peut Phil Phys plane point defects potential primary produced quenching radiation damage range reactor recoil recovery region resistivity room temperature sample scattering Seitz semiconductors shear stress shown in Fig shows slip lines solid specimen spike stage structure surface thermal threshold energy tion traps unirradiated valence band X-ray y-rays yield stress zones