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Classical directional effects for energetic electrons in crystals
Channelling of positrons and electrons
Experimental investigations of the influence of crystal structure on
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aligned alpha particles amorphous angle of incidence angular annealing approximation atomic number axis backscattering Bloch waves boron Bragg angle calculated computed copper critical angle cross section crystalline curves damage rate dechannelling defects density dependence depth diffraction diffusion direction dislocation disorder peak dose effect ejection emission energy loss experimental experiments facets Firsov foil function gold impact parameter implants increase interaction interstitial ion beam ion bombardment ion energy ions implanted ions/cm2 irradiation J.Lindhard lattice layer Lindhard low energy maximum measurements microscope observed obtained orientation particles pattern penetration Phys planar channelling plane potential predicted projectiles protons R.Kelly radiation random region room temperature Rutherford scattering sample shown in fig shows silicon single crystal solid specimen spectra sputtering yield stopping power surface target theoretical theory thermal thickness tion trajectory transmission U.K. Dr University of Sussex vacancy clusters values wave width X-ray ZrO2