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Coherent acoustic phonons in nanostructures

机译:纳米结构中的相干声学声子

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摘要

Phonons are considered as a most important origin of scattering and dissipation for electronic coherence in nanostructures. The generation of coherent acoustic phonons with femtosecond laser pulses opens the possibility to control phonon dynamics in amplitude and phase. We demonstrate a new experimental technique based on two synchronized femtosecond lasers with GHz repetition rate to study the dynamics of coherently generated acoustic phonons in semiconductor heterostructures with high sensitivity. High-speed synchronous optical sampling (ASOPS) enables to scan a time-delay of 1 ns with 100 fs time resolution with a frequency in the kHz range without a moving part in the set-up. We investigate the dynamics of coherent zone-folded acoustic phonons in semiconductor superlattices (GaAs/AlAs and GaSb/InAs) and of coherent vibration of metallic nanostructures of non-spherical shape using ASOPS.
机译:声子被认为是纳米结构中电子相干散射和散射起源的最重要的起源。具有飞秒激光脉冲的相干声学声子的生成打开了控制幅度和相位中的声子动态的可能性。我们展示了一种基于GHz重复率的两个同步飞秒激光器的新实验技术,以研究具有高灵敏度的半导体异质结构中的相干声学声子的动态。高速同步光学采样(ASOPS)能够扫描1ns的时间延迟,其中100 fs时间分辨率,频率在kHz范围内,没有设置的移动部分。我们研究了半导体超晶格(GaAs / AlaS和GaSb / InAs)中相干区域折叠声学声子的动态和使用ASOPS的非球形形状的金属纳米结构的相干振动。

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