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Imaging of a patterned and buried molecular layer by coherent acoustic phonon spectroscopy

机译:相干声子光谱成像的图案化和掩埋的分子层

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A molecular layer of aminopropyltriethoxysilane is patterned with a focused ion beam and subsequently covered by a gold film. The gold-polymer-substrate structures are afterwards imaged by ultrafast coherent acoustic phonon spectroscopy in reflection geometry. We demonstrate that the lateral structure of the covered polymer layer can be detected via the damping time of the vibrational mode of the gold film. Furthermore, we utilize Brillouin oscillations originating from the silicon substrate to map the structures and to estimate the molecular layer thickness.
机译:氨基丙基三乙氧基硅烷的分子层用聚焦离子束构图,然后被金膜覆盖。然后,通过反射几何中的超快相干声子光谱对金-聚合物-基底结构进行成像。我们证明了可以通过金膜振动模式的阻尼时间来检测被覆盖的聚合物层的横向结构。此外,我们利用源自硅衬底的布里渊振荡来绘制结构图并估算分子层厚度。

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