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- W2054781838 abstract "This paper describes the results of recent investigations of the orientation dependence of the penetration of a proton beam through a crystal lattice (Al), using the (p, γ) resonance process to detect close collisions between protons and Al atoms. A very marked decrease in (p, γ) resonance yield is found whenever the beam is aligned within a small critical angle of one of the close-packed directions. In the most favourable case (the 〈110〉 direction), the yield is attenuated by about a factor of 10. There is also a smaller decrease in yield (about a factor of 2) whenever the beam is aligned with one of the close-packed planes in the crystal. The widths at half minimum of the dips are compared with the predictions of Lindhard's theory. The observed dips in (p, γ) yield have been studied as a function of the depth beneath the crystal surface, at which the reaction is occuring. Within experimental error, the magnitude of the dips decreases exponentially with depth over a depth scale from a few hundred Ångström to several microns. The half value thickness varies from one low-index plane or direction to another. A preliminary investigation of the temperature dependence of the dip in the 〈110〉 direction has been carried out. No temperature effect is observed below 100°C, but between 100–180°C, a definite decrease in magnitude of the dip occurs." @default.
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- W2054781838 date "1965-01-01" @default.
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- W2054781838 title "An experimental study of the orientation dependence of (p,γ) yields in monocrystalline aluminum" @default.
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- W2054781838 doi "https://doi.org/10.1016/0029-554x(65)90140-0" @default.
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