论文标题

在压力下调整Skyrmion晶格系统Cu2OseO3的结构

Tuning the structure of Skyrmion lattice system Cu2OSeO3 under pressure

论文作者

Pal, Srishti, Malavi, Pallavi, Chaturvedi, Shashank, Das, Subhadip, Karmakar, S., Muthu, D. V. S., Waghmare, Umesh V., Sood, A. K.

论文摘要

绝缘的Ferrimagnet Cu2oseo3显示了各种各样的阶段,例如Skyrmion Grattice和Helical磁性,这些相位由不同交换相互作用的相互作用控制,这些相互作用可以通过外部压力调节。在这项工作中,我们使用基于同步加速器的X射线衍射和拉曼散射测量值研究了压力诱导的相变。通过第一原理理论分析,我们表明环境立方相中的自旋旋转交换耦合受静水压力的显着影响。环境立方相转换为7 GPA以上的单斜相变,然后转换为11 GPa以上的三斜相。拉曼光谱中新的声子模式的出现证实了这些结构相变。值得注意的是,在减压后,晶体经历过渡到新的单斜结构。原子坐标已在低压立方相中进行了完善,以捕获负责压力下较早报道的磁性行为的Cu四面体进化。我们的实验将激发对其在压力下的新兴磁性行为的进一步研究。

The insulating ferrimagnet Cu2OSeO3 shows a rich variety of phases such as skyrmion lattice and helical magnetism controlled by interplay of different exchange interactions which can be tuned by external pressure. In this work we have investigated pressure-induced phase transitions at room temperature using synchrotron based x- ray diffraction and Raman scattering measurements. With first-principles theoretical analysis, we show that spin-spin exchange couplings in the ambient cubic phase are affected notably by hydrostatic pressure. The ambient cubic phase transforms to a monoclinic phase above 7 GPa and then to the triclinic phase above 11 GPa. Emergence of new phonon modes in the Raman spectra confirms these structural phase transitions. Notably, upon decompression, the crystal undergoes transition to a new monoclinic structure. Atomic coordinates have been refined in the low pressure cubic phase to capture the Cu-tetrahedra evolution responsible for the earlier reported magnetic behavior under pressure. Our experiments will motivate further studies of its emergent magnetic behavior under pressure.

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