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Reciprocal space slicing: A time-efficient approach to femtosecond x-ray diffraction

机译:互惠空间切片:用于飞秒X射线衍射的时间有效方法

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摘要

An experimental technique that allows faster assessment of out-of-plane strain dynamics of thin film heterostructures via x-ray diffraction is presented. In contrast to conventional high-speed reciprocal space-mapping setups, our approach reduces the measurement time drastically due to a fixed measurement geometry with a position-sensitive detector. This means that neither the incident (ω) nor the exit (2θ) diffraction angle is scanned during the strain assessment via x-ray diffraction. Shifts of diffraction peaks on the fixed x-ray area detector originate from an out-of-plane strain within the sample. Quantitative strain assessment requires the determination of a factor relating the observed shift to the change in the reciprocal lattice vector. The factor depends only on the widths of the peak along certain directions in reciprocal space, the diffraction angle of the studied reflection, and the resolution of the instrumental setup. We provide a full theoretical explanation and exemplify the concept with picosecond strain dynamics of a thin layer of NbO2.
机译:呈现了一种实验技术,允许通过X射线衍射更快地评估薄膜异质结构的平面外应变动力学。与传统的高速互易空间映射设置相比,由于具有位置敏感检测器的固定测量几何形状,我们的方法显着降低了测量时间。这意味着在通过X射线衍射期间暂时扫描入射(ω)和出口(2θ)衍射角。固定X射线区域检测器上的衍射峰的偏移源自样品内的平面外应变。定量应变评估需要确定将观察到的转变与往复式晶格载体的变化相关的因子。该因子仅取决于沿往复空间中的某些方向的峰值的宽度,研究的反射的衍射角和仪器设置的分辨率。我们提供了一个完整的理论解释,并举例说明了NBO2薄层的皮秒应变动态的概念。

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