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Coherent X-ray diffraction imaging of photo-induced structural changes in BiFeO3 nanocrystals

机译:BiFeO3纳米晶体中光致结构变化的相干X射线衍射成像

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摘要

Multiferroic materials that exhibit coupling between ferroelectric and magnetic properties are of considerable utility for technological applications and are also interesting from a fundamental standpoint. When reduced to the nanoscale, multiferroic materials often display additional functionality that is dominated by interfacial and confinement effects. Bismuth ferrite (BiFeO3) is one such material with room temperature anti-ferromagnetic and ferroelectric ordering. Optical excitation of BiFeO3 crystals results in an elastic structural deformation of the lattice with a fast response on the pico-second time scale. Here we report on dynamic measurements to investigate the structural properties of BiFeO3 nanoscale crystals using laser excitation and three-dimensional Bragg coherent x-ray diffraction imaging. Tensile strain beyond 8 × 10^-2 was observed predominantly at the surface of the nanoscale crystal as evidenced in the reconstructed phase information and was correlated to photo-induced lattice deformation.
机译:在铁电和磁性能之间表现出耦合的多铁材料对于技术应用具有相当大的实用性,并且从基本的角度来看也很有趣。当减少到纳米级时,多铁性材料通常会显示出以界面和封闭效应为主导的附加功能。铁酸铋(BiFeO3)是一种具有室温反铁磁和铁电有序的材料。 BiFeO3晶体的光激发导致晶格的弹性结构变形,在皮秒级的时间尺度上具有快速响应。在这里我们报告动态测量,以研究使用激光激发和三维布拉格相干x射线衍射成像BiFeO3纳米级晶体的结构特性。重构相信息显示,主要在纳米级晶体表面观察到超过8×10 ^ -2的拉伸应变,并且与光致晶格变形相关。

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