Husband R J, Hagemann J, O'Bannon E F, Liermann H-P, Glazyrin K, Sneed D T, Lipp M J, Schropp A, Evans W J, Jenei Zs
Deutsches Elektronen-Synchrotron DESY, Notkestr. 85, 22607 Hamburg, Germany.
Center for X-ray and Nano Science CXNS, Deutsches Elektronen-Synchrotron DESY, Notkestr. 85, 22607 Hamburg, Germany.
Rev Sci Instrum. 2022 May 1;93(5):053903. doi: 10.1063/5.0084480.
The ability to visualize a sample undergoing a pressure-induced phase transition allows for the determination of kinetic parameters, such as the nucleation and growth rates of the high-pressure phase. For samples that are opaque to visible light (such as metallic systems), it is necessary to rely on x-ray imaging methods for sample visualization. Here, we present an experimental platform developed at beamline P02.2 at the PETRA III synchrotron radiation source, which is capable of performing simultaneous x-ray imaging and diffraction of samples that are dynamically compressed in piezo-driven diamond anvil cells. This setup utilizes a partially coherent monochromatic x-ray beam to perform lensless phase contrast imaging, which can be carried out using either a parallel- or focused-beam configuration. The capabilities of this platform are illustrated by experiments on dynamically compressed Ga and Ar. Melting and solidification were identified based on the observation of solid/liquid phase boundaries in the x-ray images and corresponding changes in the x-ray diffraction patterns collected during the transition, with significant edge enhancement observed in the x-ray images collected using the focused-beam. These results highlight the suitability of this technique for a variety of purposes, including melt curve determination.
可视化经历压力诱导相变的样品的能力,有助于确定动力学参数,例如高压相的成核速率和生长速率。对于对可见光不透明的样品(如金属系统),有必要依靠X射线成像方法来进行样品可视化。在此,我们展示了一个在PETRA III同步辐射源的P02.2光束线开发的实验平台,该平台能够对在压电驱动金刚石对顶砧中动态压缩的样品同时进行X射线成像和衍射。此装置利用部分相干单色X射线束进行无透镜相衬成像,这可以使用平行光束或聚焦光束配置来实现。通过对动态压缩的镓和氩的实验,展示了该平台的能力。基于在X射线图像中观察到的固/液相界以及在转变过程中收集的X射线衍射图案的相应变化,确定了熔化和凝固过程,在使用聚焦光束收集的X射线图像中观察到了明显的边缘增强。这些结果突出了该技术适用于多种用途,包括熔体曲线测定。