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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Acoustic solitons: A robust tool to investigate the generation and detection of ultrafast acoustic waves
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Acoustic solitons: A robust tool to investigate the generation and detection of ultrafast acoustic waves

机译:声学孤子:研究超快声波的产生和检测的强大工具

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Solitons are self-preserving traveling waves of great interest in nonlinear physics but hard to observe experimentally. In this report an experimental setup is designed to observe and characterize acoustic solitons in a GaAs(OOl) substrate. It is based on careful temperature control of the sample and an interferometric detection scheme. Ultrashort acoustic solitons, such as the one predicted by the Korteweg-de Vries equation, are observed and fully characterized. Their particlelike nature is clearly evidenced and their unique properties are thoroughly checked. The spatial averaging of the soliton wave front is shown to account for the differences between the theoretical and experimental soliton profile. It appears that ultrafast acoustic experiments provide a precise measurement of the soliton velocity. It allows for absolute calibration of the setup as well as the response function analysis of the detection layer. Moreover, the temporal distribution of the solitons is also analyzed with the help of the inverse scattering method. It shows how the initial acoustic pulse profile which gives birth to solitons after nonlinear propagation can be retrieved. Such investigations provide a new tool to probe transient properties of highly excited matter through the study of the emitted acoustic pulse after laser excitation.
机译:孤子是自保持的行波,在非线性物理学中很受关注,但很难通过实验观察。在该报告中,设计了一种实验装置来观察和表征GaAs(001)衬底中的声孤子。它基于对样品进行仔细的温度控制和干涉检测方案。观察并充分表征了超短声孤子,例如Korteweg-de Vries方程预测的孤子。清楚地证明了它们的颗粒性质,并对其独特性质进行了彻底检查。显示了孤子波前的空间平均,以解释理论和实验孤子轮廓之间的差异。似乎超快声学实验提供了对孤子速度的精确测量。它允许设置的绝对校准以及检测层的响应函数分析。此外,还利用逆散射法分析了孤子的时间分布。它显示了如何获取在非线性传播后产生孤子的初始声脉冲轮廓。通过研究激光激发后发出的声脉冲,这种研究为探测高激发物质的瞬态特性提供了一种新工具。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第6期|064306.1-064306.7|共7页
  • 作者单位

    Sorbonne Universités, UPMC Univ Paris 06, CNRS, Institut des NanoSciences de Paris (INSP), 75252 Paris cedex 05, France;

    Sorbonne Universités, UPMC Univ Paris 06, CNRS, Institut des NanoSciences de Paris (INSP), 75252 Paris cedex 05, France;

    Sorbonne Universités, UPMC Univ Paris 06, CNRS, Institut des NanoSciences de Paris (INSP), 75252 Paris cedex 05, France;

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