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Laser excited 100 GHz localized acoustic modes in Au/V nanolayers structures

机译:Au / V纳米层结构中的激光激发100 GHz局部声模

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This work presents analysis of localized acoustic modes using theory given by B. Djafari-Rouchani et al. and Rytov model of elastic waves propagation in periodical medium. Localized modes were considered for Au/V nanostructures. Experimentally Au/V nanostructures on MgO substrate with period 120-240 A were studied. Changes of light reflectivity coefficient of these nanostructures caused by femtosecond laser beam excitation were measured. Analysis of experimental results of reflectivity dependence on delay time of probe beam was made over the range up to 150 ps. The dependences of localized modes frequency on thickness of nanostructure bilayers were obtained. Measured frequencies of localized modes remain in agreement to the theoretical values.
机译:这项工作利用B. Djafari-Rouchani等人给出的理论对局域声模进行了分析。和Rytov模型在周期介质中传播的弹性波。 Au / V纳米结构考虑了局部模式。实验研究了MgO衬底上120-240 A周期的Au / V纳米结构。测量了由飞秒激光束激发引起的这些纳米结构的光反射系数的变化。在高达150 ps的范围内,对反射率与探测光束延迟时间的关系进行了实验分析。获得了局部模式频率对纳米结构双层膜厚度的依赖性。局部模式的测量频率保持与理论值一致。

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