首页> 外文会议>Annual Conference on Magnetism Magnetic Materials >Simultaneous magnetic force microscopy imaging of perpendicular and in-plane magnetic field gradient on La_(0.7)Sr_(0.3)MnO_3 granular film with in-plane magnetization
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Simultaneous magnetic force microscopy imaging of perpendicular and in-plane magnetic field gradient on La_(0.7)Sr_(0.3)MnO_3 granular film with in-plane magnetization

机译:具有在线磁化的LA_(0.7)SR_(0.3)MNO_3颗粒膜上垂直和面内磁场梯度的同时磁力显微镜成像

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Our recently developed magnetic force microscopy for simultaneous imaging of perpendicular and in-plane magnetic field gradients was applied to polycrystalline La_(0.7)Sr_(0.3)MnO_3 granular films with in-plane magnetization. The present method clearly imaged the gradient of the perpendicular and the in-plane magnetic field from the boundary phase, which behaved as a magnetic double layer with two separate planes of magnetic charges. Especially after magnetizing the film in one direction, the perpendicular and in-plane magnetic field gradients of a magnetic double layer with opposite-sign magnetic charges were clearly observed by this method. Calculated magnetic field gradients are consistent with those of the magnetic force microscopy images. The present method seems to be effective in evaluating the magnetic isolation between neighboring magnetic grains having the component of in-plane magnetization.
机译:我们最近开发的磁力显微镜用于同时成像的垂直和面内磁场梯度,应用于具有面内磁化的多晶La_(0.7)Sr_(0.3)MnO_3粒状膜。本方法清楚地将垂直和面内磁场的梯度从边界相上成像,其表现为磁性双层,其具有两个单独的磁性电荷平面。特别是在一个方向上磁化膜之后,通过该方法清楚地观察到具有相反符号磁性电荷的磁性双层的垂直和面内磁场梯度。计算的磁场梯度与磁力显微镜图像的磁场梯度一致。本方法似乎有效地评估了具有面内磁化的部件的相邻磁性颗粒之间的磁隔离。

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