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Cantilever measurements of surface stress, surface reconstruction, film stress and magnetoelastic stress of monolayers

机译:悬臂测量单层表面应力,表面重构,膜应力和磁弹性应力

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We review the application of cantilever-based stress measurements in surface science and magnetism. The application of thin (thickness appr. 0.1 mm) single crystalline substrates as cantilevers has been used successfully to measure adsorbate-induced surface stress changes, lattice misfit induced film stress, and magneto-elastic stress of ferromagnetic monolayers. Surface stress changes as small as 0.01 N/m can be readily measured, and this translates into a sensitivity for adsorbate-coverage well below 0.01 of one layer. Stress as large as several GPa, beyond the elasticity limits of high strength materials, is measured, and it is ascribed to the lattice misfit between film and substrate. Our results point at the intimate relation between surface stress and surface reconstruction, stress-induced structural changes in epitaxially strained films, and strain-induced modifications of the magneto-elastic coupling in ferromagnetic monolayers.
机译:我们回顾了基于悬臂的应力测量在表面科学和磁性中的应用。薄(厚度约0.1 mm)单晶衬底作为悬臂的应用已成功用于测量吸附剂引起的表面应力变化,晶格失配引起的膜应力以及铁磁单层的磁弹性应力。可以很容易地测量到0.01 N / m的表面应力变化,这转化为对吸附物覆盖率的敏感度,该灵敏度远低于一层的0.01。可以测量高达几GPa的应力,超出了高强度材料的弹性极限,这归因于薄膜和基材之间的晶格失配。我们的研究结果表明,表面应力与表面重建,外延应变膜中应力诱导的结构变化以及铁磁单层中磁弹性耦合的应变诱导修饰之间存在密切关系。

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