Department of Physics, POSTECH, Pohang 37673, Korea.
Nanoscale. 2018 Jul 13;10(27):13159-13164. doi: 10.1039/c8nr03733g.
Unraveling nanoscale spin structures has long been an important activity addressing various scientific interests, that are also readily adaptable to technological applications. This has invigorated the development of versatile nanoprobes suitable for imaging specimens under native conditions. Here we have demonstrated the resonant coherent diffraction of an artificial quasicrystal magnet with circularly polarized X-rays. The nanoscale magnetic structure was revealed from X-ray speckle patterns by comparing with micromagnetic simulations, as a step toward understanding the intricate relationship between the chemical and spin structures in an aperiodic quasicrystal lattice. Femtosecond X-ray pulses from free electron lasers are expected to immediately extend the current work to nanoscale structure investigations of ultrafast spin dynamics, surpassing the present spatio-temporal resolution.
解析纳米级自旋结构一直是一项重要的活动,涉及到各种科学兴趣,也很容易适用于技术应用。这激发了多功能纳米探针的发展,适用于在自然条件下对样品进行成像。在这里,我们展示了利用圆偏振 X 射线对人工准晶磁体的相干衍射。通过与微磁模拟进行比较,从 X 射线散斑图案中揭示了纳米级磁结构,这是理解非周期性准晶格子中化学和自旋结构之间复杂关系的一步。自由电子激光的飞秒 X 射线脉冲有望立即将当前的工作扩展到超快自旋动力学的纳米级结构研究,超越当前的时空分辨率。