论文标题
在独立的BifeO3膜中观察单轴菌株调节的自旋旋转型旋转
Observation of uniaxial strain tuned spin cycloid in a freestanding BiFeO3 film
论文作者
论文摘要
破坏空间反转对称并允许有效的电场控制磁性的非电视自旋顺序使Bifeo $ _3 $成为低功率Spintronic设备应用程序的有前途的候选人。已经对外延应变效应进行了深入研究,并显示了Bifeo $ _3 $中磁性的显着调制,但是直到现在仍缺乏使用连续变化的单轴菌株调整其自旋结构。在这里,我们将单轴应变应用于独立的Bifeo $ _3 $胶卷,并使用扫描NV显微镜在真实空间中对纳米级磁性构图。应变从0 \%持续增加到1.5 \%,在此期间获得了不同菌株下的四个图像。这些图像显示,当应变接近1.5 \%时,自旋旋转的倾斜度为$ \ sim 12.6^\ circ $。已经处理了第一个原理计算,以表明在这种菌株下倾斜在能量上是有利的。我们的\ emph {intu}菌株应用方法与扫描NV显微镜真实空间成像能力结合使用,铺平了一种新的方法,用于研究Bifeo $ _3 $胶片中磁顺序与应变之间的耦合。
Non-collinear spin order that breaks space inversion symmetry and allows efficient electric-field control of magnetism makes BiFeO$_3$ a promising candidate for applications in low-power spintronic devices. Epitaxial strain effects have been intensively studied and exhibit significant modulation of the magnetic order in BiFeO$_3$, but tuning its spin structure with continuously varied uniaxial strain is still lacking up to date. Here, we apply \emph{in situ} uniaxial strain to a freestanding BiFeO$_3$ film and use scanning NV microscope to image the nanoscale magnetic order in real-space. The strain is continuously increased from 0\% to 1.5\% and four images under different strains are acquired during this period. The images show that the spin cycloid tilts by $\sim 12.6^\circ$ when strain approaches 1.5\%. A first principle calculation has been processed to show that the tilting is energetically favorable under such strain. Our \emph{in situ} strain applying method in combination with scanning NV microscope real-space imaging ability paves a new way in studying the coupling between magnetic order and strain in BiFeO$_3$ films.