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Adatoms and their relation to surface stress

机译:吸附原子及其与表面应力的关系

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Experimental techniques are now available to measure changes in surface stress due to sub-monolayer coverages of adatoms on a substrate. It has been observed that even for fairly low coverage, a significant stress develops that can greatly impact growth mechanisms and defect formation during the early stages of crystal growth. In this manuscript, the relationship between adatoms and macroscopic stress is developed within a rigorous continuum framework that has direct links with atomic scale properties of adatoms. The result provides a means for measuring properties of individual adatoms and gives new insight to adatom interactions. Comparison with experiments shows that adatom interactions depend on strain. A strong strain dependence is evident, even when adatoms are far apart. It is found that the dipole characterizing an adatom may change with applied strain, strain induced by other defects, and interactions with boundaries. The analysis yields a simple relation between surface stress and the level of adatom coverage during deposition that is in agreement with experimental observations.
机译:现在可以使用实验技术来测量由于衬底上亚原子的亚单层覆盖而引起的表面应力变化。已经观察到,即使对于相当低的覆盖率,也会产生显着的应力,该应力会极大地影响晶体生长早期阶段的生长机理和缺陷形成。在此手稿中,原子与宏观应力之间的关系是在严格的连续谱框架内发展的,该框架与原子的原子尺度特性直接相关。该结果提供了一种用于测量单个原子的性质的方法,并提供了对原子相互作用的新见解。与实验的比较表明,吸附原子的相互作用取决于应变。即使当原子彼此相距很远时,也很明显地存在很强的应变依赖性。已经发现,表征吸附原子的偶极子可能会随着所施加的应变,其他缺陷引起的应变以及与边界的相互作用而发生变化。通过分析得出沉积过程中表面应力与吸附原子的水平之间的简单关系,这与实验观察一致。

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