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Dynamics of nanoscale triangular features on Ge surfaces

机译:锗表面纳米三角形特征的动力学

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摘要

Ion beam sputtering, known as potential technique for producing nanoripple on various surfaces having wide range of applications. Along with nanoripple, triangular features are also superimposed, limiting their use for some potential applications. Here we are reporting evolution of triangular features on Ge (100) surfaces under low energy (300-1000 eV) Xe ion irradiation at room temperature for angles of incidence (61 degrees-80 degrees) and ion fluences of (5.34 x 10(17)-8.01 x 10(18) ions cm(-2)). Triangular features appear with the onset of ripple formation and disappear when the ripple periodicity is lost. These features formation depend not only on material but also depend on the ratio of the ion/target mass. In comparison with numerical simulations based on modified anisotropic Kuramoto-Sivanshinsky equation, we find good agreement for the evolution of base angle and lateral length for the triangular features with ion incidence angle. The dynamics of triangular feature with ion incidence angle and ion fluence have been reported. Ion-incidence angle dependency is adequately replicated in numerical simulations. Experimentally the base angle and lateral length increases with increase in ion incidence angle, similar trend is observed in numerical simulation.
机译:离子束溅射,被称为在各种表面上产生纳米波纹的潜在技术,具有广泛的应用范围。除了纳米波纹外,三角形特征也被叠加在一起,限制了它们在一些潜在应用中的使用。在这里,我们报告了在室温下低能量(300-1000 eV)氙离子辐照下Ge(100)表面三角形特征的演变,入射角(61度-80度)和离子通量(5.34 x 10(17)-8.01 x 10(18)离子cm(-2))。三角形特征随着纹波形成的开始而出现,当纹波周期性消失时消失。这些特征的形成不仅取决于材料,还取决于离子/靶质量的比值。与基于修正各向异性Kuramoto-Sivanshinsky方程的数值模拟结果相比,我们发现三角形特征的基角和横向长度随离子入射角的变化具有较好的一致性。已经报道了三角形特征与离子入射角和离子通量的动态变化。离子入射角依赖性在数值模拟中得到了充分的复制。实验结果表明,基角和侧向长度随离子入射角的增大而增大,数值模拟也观察到类似的趋势。

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