论文标题

表面声子的三维矢量成像

Three dimensional vectorial imaging of surface phonons

论文作者

Li, Xiaoyan, Haberfehlner, Georg, Hohenester, Ulrich, Stéphan, Odile, Kothleitner, Gerald, Kociak, Mathieu

论文摘要

虽然对声子及其相关特性进行了全面研究,但对纳米级对象的表面声子的透彻理解仍然难以捉摸。存在具有光子或电子的红外成像方法,可以将这些振动激发映射到单个原子量表。但是,到目前为止,尚无技术能够直接揭示来自纳米结构对象的状态的语音电磁密度的完整三维矢量图。在扫描透射电子显微镜中,使用高度单色的电子束,我们可以可视化来自纳米级MGO立方体的变化的声子标志,这既是光束位置,能量损失和倾斜角的函数。振动响应是用定义明确的本征码来描述的,并用于在层压板上重建对象的语音表面场,从而通过常规映射揭示了不可见的效果。表面声子的应用非常依赖于电磁场在空间和矢量形状上的方式,从而强烈影响材料的光学,热和电子行为。因此,这样的3D信息有望在纳米级物理现象中进行新颖的见解,并且对于引人入胜的新用途的纳米结构的设计和优化是无价的。

While phonons and their related properties have been studied comprehensively in bulk materials, a thorough understanding of surface phonons for nanoscale objects remains elusive. Infra-red imaging methods with photons or electrons exist, which can map these vibrational excitations down to the individual atom scale. However, no technique so far was able to directly reveal the complete three-dimensional vectorial picture of the phononic electromagnetic density of states from a nanostructured object. Using a highly monochromated electron beam in a scanning transmission electron microscope, we could visualize varying phonon signatures from nanoscale MgO cubes both as a function of the beam position, energy-loss and tilt angle. The vibrational responses were described in terms of well-defined eigenmodes and were used to tomographically reconstruct the phononic surface fields of the object, disclosing effects invisible by conventional mapping. Surface phonon applications rely critically on the way the electromagnetic field is spatially and vectorially shaped, strongly influencing the optical, thermal and electronic behavior of the materials. Such 3D information therefore promises novel insights in nanoscale physical phenomena and is invaluable to the design and optimization of nanostructures for fascinating new uses.

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