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Scanning Thermal Wave Microscopy (STWM)

机译:扫描热波显微镜(STEM)

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This paper presents a technique, scanning thermal wave microscopy (STWM), which can image the phase lag and amplitude of thermal waves with sub-micrometer resolution by scanning a temperature-sensing nanoscale tip across a sample surface. Phase, lag measurements during tip-sample contact showed enhancement of tip-sample heat transfer due to the presence of a liquid film. The measurement accuracy of STWM is proved by a benchmark experiment and comparison to theoretical prediction. The application of STWM for sub-surface imaging of buried structures is demonstrated by measuring the phase lag and amplitude distributions of an interconnect via sample. The measurement showed excellent agreement with a finite element analysis offering the promising prospects of three-dimensional thermal probing of micro and nanostructures. Finally, it was shown that the resolving power of thermal waves for subsurface structures improves as the wavelengths of the thermal waves become shorter at higher modulation frequencies.
机译:本文介绍了一种技术,扫描热波显微镜(STWM),它可以通过扫描整个样品表面的温度感应纳米级尖端来以亚微米分辨率成像热波的相位滞后和幅度。针尖样品接触期间的相位,滞后测量显示由于存在液膜,针尖样品传热增强。通过基准实验和与理论预测的比较证明了STWM的测量精度。通过测量样品的互连的相位滞后和幅度分布,证明了STWM在埋入结构的地下成像中的应用。测量结果与有限元分析显示出极好的一致性,为微观和纳米结构的三维热探测提供了有希望的前景。最后,结果表明,在较高的调制频率下,随着热波波长的变短,用于地下结构的热波的分辨能力会提高。

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