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RARE GAS SCATTERING FROM MOLTEN METALS EXAMINED WITH CLASSICAL SCATTERING THEORY

机译:经经典散射理论检验的熔融金属中的稀有气体散射

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Classical limit expressions of the differential reflection coefficient for atoms scattering from a surface are compared with recent experiments for the scattering of monoenergetic beams of Ne, Ar, and Xe with incident energies in the eV range from the molten metal surfaces Ga, In, and Bi. We find that single collision events usually make the greatest contribution to the backscattered intensity, double collision events make a significant but smaller contribution, and scattering of atoms that are completely trapped and subsequently thermally desorbed has a small probability. In the case of large mass incident projectiles and small mass target atoms we find some evidence for collective mass effects of the target. An analysis of the temperature dependence of the intensities shows that these surfaces act neither as a smooth continuous repulsive barrier nor as a collection of discrete scattering centers; rather they exhibit a behavior in between these two extremes. (C) 1997 American Institute of Physics. [References: 27]
机译:从表面散射原子的微分反射系数的经典极限表达式与最近的实验进行了比较,该实验是从熔融金属表面Ga,In和Bi散射e,eV入射能量的Ne,Ar和Xe单能束的散射。我们发现,单碰撞事件通常对反向散射强度的贡献最大,双碰撞事件的贡献很大,但贡献较小,并且完全俘获并随后热脱附的原子的散射可能性很小。对于大质量入射弹丸和小质量目标原子,我们发现了目标集体质量效应的一些证据。对强度的温度依赖性的分析表明,这些表面既不充当光滑的连续排斥屏障,也不充当离散散射中心的集合。相反,它们表现出介于这两个极端之间的行为。 (C)1997美国物理研究所。 [参考:27]

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