首页> 外文期刊>Journal of Applied Physics >Real-time observation of coherent acoustic phonons generated by an acoustically mismatched optoacoustic transducer using x-ray diffraction
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Real-time observation of coherent acoustic phonons generated by an acoustically mismatched optoacoustic transducer using x-ray diffraction

机译:使用X射线衍射实时观察声学失配的光声换能器产生的相干声子

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摘要

The spectrum of laser-generated acoustic phonons in indium antimonide coated with a thin nickel film has been studied using time-resolved x-ray diffraction. Strain pulses that can be considered to be built up from coherent phonons were generated in the nickel film by absorption of short laser pulses. Acoustic reflections at the Ni-InSb interface leads to interference that strongly modifies the resulting phonon spectrum. The study was performed with high momentum transfer resolution together with high time resolution. This was achieved by using a third-generation synchrotron radiation source that provided a high-brightness beam and an ultrafast x-ray streak camera to obtain a temporal resolution of 10 ps. We also carried out simulations, using commercial finite element software packages and on-line dynamic diffraction tools. Using these tools, it is possible to calculate the time-resolved x-ray reflectivity from these complicated strain shapes. The acoustic pulses have a peak strain amplitude close to 1%, and we investigated the possibility to use this device as an x-ray switch. At a bright source optimized for hard x-ray generation, the low reflectivity may be an acceptable trade-off to obtain a pulse duration that is more than an order of magnitude shorter.
机译:使用时间分辨的X射线衍射研究了在涂有镍薄膜的锑化铟中激光产生的声子的光谱。通过吸收短激光脉冲,在镍膜中产生了可以认为是由相干声子构成的应变脉冲。 Ni-InSb界面处的声反射会导致干扰,从而强烈改变所得声子谱。这项研究以高动量传递分辨率和高时间分辨率进行。这是通过使用第三代同步加速器辐射源实现的,该辐射源提供了高亮度光束和超快X射线条纹相机,以获得10 ps的时间分辨率。我们还使用商业有限元软件包和在线动态衍射工具进行了仿真。使用这些工具,可以从这些复杂的应变形状计算时间分辨的X射线反射率。声脉冲的峰值应变幅度接近1%,我们研究了将此设备用作X射线开关的可能性。在为产生硬X射线而优化的明亮光源下,低反射率可能是可以接受的折衷方案,以获得的脉冲持续时间要短一个数量级以上。

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  • 来源
    《Journal of Applied Physics》 |2015年第18期|185308.1-185308.6|共6页
  • 作者单位

    Department of Physics, Lund University, P.O. Box 118, SE-221 00 Lund, Sweden;

    MAX Ⅳ Laboratory, Lund University, P.O. Box 118, SE-221 00 Lund, Sweden;

    MAX Ⅳ Laboratory, Lund University, P.O. Box 118, SE-221 00 Lund, Sweden;

    Department of Physics, Lund University, P.O. Box 118, SE-221 00 Lund, Sweden ,School of Information Technology, Halmstad University, P.O. Box 823, SE-301 18 Halmstad, Sweden;

    Department of Physics, Lund University, P.O. Box 118, SE-221 00 Lund, Sweden ,MAX Ⅳ Laboratory, Lund University, P.O. Box 118, SE-221 00 Lund, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 03:09:13

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