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布拉格相干衍射成像技术在皮秒时间尺度下对氧化锌声子的研究。

Bragg Coherent Diffractive Imaging of Zinc Oxide Acoustic Phonons at Picosecond Timescales.

机构信息

Materials Science Division, Argonne National Laboratory, Argonne, Illinois, 60439, USA.

Advanced Photon Source, Argonne National Laboratory, Argonne, Illinois, 60439, USA.

出版信息

Sci Rep. 2017 Aug 29;7(1):9823. doi: 10.1038/s41598-017-09999-0.

Abstract

Mesoscale thermal transport is of fundamental interest and practical importance in materials such as thermoelectrics. Coherent lattice vibrations (acoustic phonons) govern thermal transport in crystalline solids and are affected by the shape, size, and defect density in nanoscale materials. The advent of hard x-ray free electron lasers (XFELs) capable of producing ultrafast x-ray pulses has significantly impacted the understanding of acoustic phonons by enabling their direct study with x-rays. However, previous studies have reported ensemble-averaged results that cannot distinguish the impact of mesoscale heterogeneity on the phonon dynamics. Here we use Bragg coherent diffractive imaging (BCDI) to resolve the 4D evolution of the acoustic phonons in a single zinc oxide rod with a spatial resolution of 50 nm and a temporal resolution of 25 picoseconds. We observe homogeneous (lattice breathing/rotation) and inhomogeneous (shear) acoustic phonon modes, which are compared to finite element simulations. We investigate the possibility of changing phonon dynamics by altering the crystal through acid etching. We find that the acid heterogeneously dissolves the crystal volume, which will significantly impact the phonon dynamics. In general, our results represent the first step towards understanding the effect of structural properties at the individual crystal level on phonon dynamics.

摘要

介观热传输在热电器件等材料中具有基础科学意义和实际应用价值。相干晶格振动(声学声子)控制着晶态固体的热传输,并且受到纳米材料中形状、尺寸和缺陷密度的影响。能够产生超快 X 射线脉冲的硬 X 射线自由电子激光(XFEL)的出现,通过用 X 射线直接研究它们,极大地促进了对声学声子的理解。然而,以前的研究报告了平均的结果,无法区分介观非均匀性对声子动力学的影响。在这里,我们使用布拉格相干衍射成像(BCDI)以 50nm 的空间分辨率和 25 皮秒的时间分辨率来解析单个氧化锌棒中声子的 4D 演化。我们观察到了均匀(晶格呼吸/旋转)和非均匀(剪切)的声学声子模式,并将其与有限元模拟进行了比较。我们研究了通过酸蚀改变晶体来改变声子动力学的可能性。我们发现酸不均匀地溶解了晶体体积,这将显著影响声子动力学。总的来说,我们的结果代表了在单个晶体水平上理解结构性质对声子动力学影响的第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f26/5574892/c1ab2978053c/41598_2017_9999_Fig1_HTML.jpg

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