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Nanosecond white-light Laue diffraction measurements of dislocation microstructure in shock-compressed single-crystal copper

机译:冲击压缩单晶铜中位错微观结构的纳秒白光Laue衍射测量

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Under uniaxial high-stress shock compression it is believed that crystalline materials undergo complex, rapid, micro-structural changes to relieve the large applied shear stresses. Diagnosing the underlying mechanisms involved remains a significant challenge in the field of shock physics, and is critical for furthering our understanding of the fundamental lattice-level physics, and for the validation of multi-scale models of shock compression. Here we employ white-light X-ray Laue diffraction on a nanosecond timescale to make the first in situ observations of the stress relaxation mechanism in a laser-shocked crystal. The measurements were made on single-crystal copper, shocked along the [001] axis to peak stresses of order 50?GPa. The results demonstrate the presence of stress-dependent lattice rotations along specific crystallographic directions. The orientation of the rotations suggests that there is double slip on conjugate systems. In this model, the rotation magnitudes are consistent with defect densities of order 1012?cm?2.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:人们认为,在单轴高应力冲击压缩下,晶体材料会经历复杂,快速的微观结构变化,以减轻较大的施加的剪切应力。诊断所涉及的潜在机制仍然是冲击物理学领域的一项重大挑战,对于增进我们对基本晶格级物理学的理解以及验证冲击压缩的多尺度模型至关重要。在这里,我们采用纳秒级的白光X射线Laue衍射来对激光冲击晶体中的应力松弛机理进行首次现场观察。测量是在单晶铜上进行的,沿[001]轴震动至峰值应力为50?GPa。结果表明存在沿特定晶体学方向的应力依赖性晶格旋转。旋转的方向表明共轭体系存在双重滑移。在该模型中,旋转量与1012Ω·cm·2量级的缺陷密度一致。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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