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Detection of coherent optical phonons in a thin bismuth film by ultrafast electron diffraction

机译:超氮型电子衍射检测薄铋膜中的相干光学声音

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摘要

Coherent dynamics of lattice oscillations in a similar to 20-nmthick film obtained by thermal sputtering of bismuth is studied using ultrashort electron bunches synchronised with femtosecond laser pulses irradiating the sample. The Fourier analysis of ultrafast electron diffraction (UED) data shows that the observed modulation of the signal is due to the ensemble of modes corresponding to optical phonons with frequencies of approximately 3, 6 and 9 THz. A conclusion is made that these peaks correspond to the manifestation of the bismuth A(1g) mode (three-terahertz peak), as well as its first and second overtones, which is probably due to quantum confinement in a 20-nm Bi nanostructure. The possibility of a detailed study of the quantum-size effect in bismuth with the help of a transmission UED is analysed.
机译:使用与辐射样品的飞秒激光脉冲同步的超微电子束来研究通过热溅射获得的类似于20-Nmthick薄膜的相干动力学。 超快电子衍射(UED)数据的傅里叶分析表明,所观察到的信号调制是由于与光学声音相对应的模式的集合,其频率约为3,6和9 THz。 结论是,这些峰值对应于铋A(1g)模式(三核峰)(三核峰)的表现,以及其第一和第二ovtones,这可能是由于20nm Bi纳米结构中的量子限制。 分析了借助于释放释放铋中铋中量子尺寸效应的详细研究的可能性。

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