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Interface selective transient grating spectroscopy: Theory and applications to thermal flow and acoustic propagation in thin films.

机译:界面选择性瞬态光栅光谱:薄膜中热流和声传播的理论和应用。

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A general theoretical and experimental treatment of transient grating diffraction is developed for interfacial holographic gratings in thin film structures. The gratings are assumed to have nonuniform spatial amplitude throughout the sample. Both reflection and transmission diffraction geometries are examined where the probe beam is incident on either side of the film-substrate interface with the grating wave-vector parallel to the interface. For samples in which the grating amplitude perpendicular to the sample interface varies slowly relative to the optical wavelength, the majority of the reflection geometry signal amplified is shown to arise from the surface or interfacial region. In contrast, the transmission geometry signal amplitude is dominated by contributions from the bulk of the sample. Three different material systems are examined. The first is a thin ({dollar}{dollar}1 GHz) acoustic Rayleigh waveguide modes are measured in the YBCO films from 17 to 300 K.
机译:针对薄膜结构中的界面全息光栅,开发了瞬态光栅衍射的一般理论和实验方法。假设光栅在整个样本中具有不均匀的空间振幅。检查反射和透射衍射几何形状,其中探测光束以平行于界面的光栅波矢量入射在膜-基底界面的任一侧。对于垂直于样品界面的光栅幅度相对于光学波长缓慢变化的样品,放大的大部分反射几何信号显示为来自表面或界面区域。相比之下,透射几何信号的振幅主要由大部分样品的贡献所决定。研究了三种不同的材料系统。第一个是在YBCO薄膜中测量的从17到300 K的薄({dollar} {dollar} 1 GHz)声瑞利波导模。

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