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Spatial-temporally resolved high-frequency surface acoustic waves on silicon investigated by femtosecond spectroscopy

机译:飞秒光谱法研究硅上的时空分解高频表面声波

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摘要

Various types of surface acoustic waves are generated by femtosecond pulses on bulk silicon with aluminium stripe transducers. Rayleigh and leaky longitudinal surface acoustic wave modes are detected in the time domain for various propagation distances. The modes are identified by measuring on various pitches and comparing the spectra with finite element calculations. The lifetimes of the modes are determined quantitatively by spatially separating pump and probe beam, showing a significant difference in the lifetimes of both modes. We were able to excite and measure Rayleigh modes with frequencies of up to 90 GHz using a 100 nm period grating.
机译:飞秒脉冲通过铝条换能器在块状硅上产生各种类型的表面声波。在时域中针对各种传播距离检测瑞利和泄漏纵向声表面波模式。通过在各种螺距上进行测量并将光谱与有限元计算进行比较来识别模式。模式的寿命是通过在空间上分离泵浦光束和探测光束来定量确定的,这表明两种模式的寿命存在显着差异。我们能够使用100 nm周期光栅激发和测量频率高达90 GHz的瑞利模式。

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