Butcher Tim A, Phillips Nicholas W, Chiu Chun-Chien, Wei Chia-Chun, Ho Sheng-Zhu, Chen Yi-Chun, Fröjdh Erik, Baruffaldi Filippo, Carulla Maria, Zhang Jiaguo, Bergamaschi Anna, Vaz Carlos A F, Kleibert Armin, Finizio Simone, Yang Jan-Chi, Huang Shih-Wen, Raabe Jörg
Paul Scherrer Institut, Villigen PSI, 5232, Switzerland.
Department of Physics, National Cheng Kung University, Tainan, 70101, Taiwan.
Adv Mater. 2024 Jun;36(23):e2311157. doi: 10.1002/adma.202311157. Epub 2024 Mar 10.
Understanding the magnetic and ferroelectric ordering of magnetoelectric multiferroic materials at the nanoscale necessitates a versatile imaging method with high spatial resolution. Here, soft X-ray ptychography is employed to simultaneously image the ferroelectric and antiferromagnetic domains in an 80 nm thin freestanding film of the room-temperature multiferroic BiFeO (BFO). The antiferromagnetic spin cycloid of period 64 nm is resolved by reconstructing the corresponding resonant elastic X-ray scattering in real space and visualized together with mosaic-like ferroelectric domains in a linear dichroic contrast image at the Fe L edge. The measurements reveal a near perfect coupling between the antiferromagnetic and ferroelectric ordering by which the propagation direction of the spin cycloid is locked orthogonally to the ferroelectric polarization. In addition, the study evinces both a preference for in-plane propagation of the spin cycloid and changes of the ferroelectric polarization by 71° between multiferroic domains in the epitaxial strain-free, freestanding BFO film. The results provide a direct visualization of the strong magnetoelectric coupling in BFO and of its fine multiferroic domain structure, emphasizing the potential of ptychographic imaging for the study of multiferroics and non-collinear magnetic materials with soft X-rays.
要在纳米尺度上理解磁电多铁性材料的磁性和铁电有序性,需要一种具有高空间分辨率的通用成像方法。在此,采用软X射线叠层成像术对室温多铁性BiFeO(BFO)的80纳米厚独立薄膜中的铁电畴和反铁磁畴进行同时成像。通过在实空间中重建相应的共振弹性X射线散射,解析出周期为64纳米的反铁磁自旋摆线,并在Fe L边的线性二向色性对比图像中与马赛克状铁电畴一起可视化。测量结果揭示了反铁磁和铁电有序之间近乎完美的耦合,通过这种耦合,自旋摆线的传播方向与铁电极化正交锁定。此外,该研究表明,在无外延应变的独立BFO薄膜中,自旋摆线倾向于面内传播,并且多铁性畴之间的铁电极化变化了71°。这些结果直接可视化了BFO中强磁电耦合及其精细的多铁性畴结构,强调了叠层成像术利用软X射线研究多铁性材料和非共线磁性材料的潜力。