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Magnetostatic Dipolar Domain-wall Pinning In Chains Of Permalloy Triangular Rings

机译:坡莫合金三角环链中的静磁偶极畴壁钉扎

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In a combined experimental and numerical study, we investigated the details of the motion and pinning of domain walls in isolated and interacting permalloy triangular rings (side 2 μm, width 250 nm, and thickness 25 nm). To induce interaction between the rings, they were arranged either in vertical chains with an apex of each triangle in proximity to the edge center of the triangle above it or in horizontal chains where the proximity is between the adjacent corners of the triangles. Using longitudinal and diffraction magneto-optic Kerr effects, magnetic force microscopy, and micromagnetic simulations, we determined the field dependence of the spin structure in the rings. In all cases the remnant state of each ring is an "onion" state characterized by two domain walls-one head to head the other tail to tail-pinned at the apexes. In isolated rings the magnetization reversal occurs between two onion states via the formation of an intermediate vortex state, which arises from the motion and annihilation of the two domain walls. In the case of the horizontal chains the reversal mechanism is unchanged except that the dipolar interaction affects the field range in which the rings are in the vortex state. In the case of vertical chains an additional intermediate state is observed during reversal. The new state involves a domain wall pinned at the center of the edge that is in close proximity to the apex of its neighbor. We show that the domain-wall motion in this last case can be modeled by a triple potential well. Because the new state requires that a domain wall be pinned at the neighboring apex, our observations can be viewed as a very elementary form of magnetic logic.
机译:在一项组合的实验和数值研究中,我们研究了隔离且相互作用的坡莫合金三角形环(侧面2μm,宽度250 nm,厚度25 nm)中畴壁的运动和固定的细节。为了引起环之间的相互作用,将它们排列成垂直链,每个三角形的顶点靠近其上方的三角形的边缘中心,或者排列成水平链,其中相邻的位置在三角形的相邻角之间。使用纵向和衍射磁光Kerr效应,磁力显微镜和微磁模拟,我们确定了环中自旋结构的场依赖性。在所有情况下,每个环的残余状态都是“洋葱”状态,其特征是两个畴壁,一个头到另一个头,另一个尾巴被钉在顶点。在隔离的环中,由于两个畴壁的运动和an灭而形成的中间涡旋状态会在两个洋葱状态之间发生磁化反转。在水平链的情况下,除了偶极相互作用影响环处于涡旋状态的场范围外,反转机理没有改变。在垂直链的情况下,在反转过程中会观察到其他中间状态。新状态涉及固定在边缘中心的畴壁,该边缘墙紧邻其邻居的顶点。我们证明了在后一种情况下的畴壁运动可以用三重势阱建模。因为新状态要求将畴壁固定在相邻的顶点上,所以我们的观察结果可以视为磁逻辑的非常基本的形式。

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