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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Direct measurement of ultrafast surface displacement in laser picosecond acoustics
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Direct measurement of ultrafast surface displacement in laser picosecond acoustics

机译:直接测量激光皮秒级声学中的超快表面位移

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Picosecond acoustic pulses generated in solids with ultrashort optical pulses can be detected through the reflectance or phase changes of optical probe pulses. The detection relies on acousto-optic coupling resulting from a combination of the photoelastic effect and transient surface displacements. The acoustic strain pulse shape gives access to the ultrafast dynamics of the electrons that influence the generation process. This pulse shape is directly related to the contribution to the probe light modulation resulting from surface displacement. Here we present a method that allows the discrimination between the photoelastic and surface displacement contributions using a novel oblique optical incidence geometry, allowing the strain pulse shape to be directly obtained in a single measurement.
机译:可以通过光学探针脉冲的反射率或相位变化来检测具有超短光学脉冲的固体中产生的皮秒声脉冲。该检测依赖于由光弹性效应和瞬时表面位移共同产生的声光耦合。声应变脉冲形状可以访问影响生成过程的电子超快动力学。该脉冲形状与表面位移对探针光调制的贡献直接相关。在这里,我们提出了一种方法,该方法可以使用新颖的倾斜光学入射几何结构来区分光弹性和表面位移的贡献,从而可以在单个测量中直接获得应变脉冲形状。

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