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Substrate- and growth-related microstructural and magnetic properties in La0.67Sr0.33MnO3 thin films

机译:La0.67Sr0.33MnO3薄膜中与基底和生长相关的微观结构和磁性

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Abstract: Ambient observation of magnetic domain structures by magnetic force microscopy (MFM) in La$-0.67$/Sr$-0.33$/MnO$-3$/ films has not been clearly correlated with stresses induced by kinetic growth processes or the compressive (LaAlO$-3$/) or tensile (SrTiO$-3$/) nature of the film-substrate lattice mismatch. Although domain-like magnetic structures have been seen for some as-grown films and related to substrate-induced stress and film thickness, no magnetic structure has been seen for other films grown under similar conditions on the same pair of substrates. In this study we have grown films over a range of temperatures by pulsed-laser deposition, using the above substrates, to determine the relationship between growth and stress-induced magnetic structures. Results from scanning tunneling, atomic force, and magnetic force microscopies, measurements of temperature-dependent magnetization and structure-dependent coercivity show the relationship between growth and magnetic properties. Maze-like domain structures, with separations between 150 nm and 200 nm, were only observed for the thicker films grown at the highest temperature, 800 degrees Celsius. Application of an in-plane magnetic field converted these domain structures to stripe-like domains whose spacing and out of plane component decreased as the field was increased. !10
机译:摘要:磁力显微镜(MFM)在La $ -0.67 $ / Sr $ -0.33 $ / MnO $ -3 $ /薄膜中对磁畴结构的环境观察与动力学生长过程或压缩应力引起的应力并没有明显的相关性(LaAlO $ -3 $ /)或拉伸(SrTiO $ -3 $ /)性质的膜-基底晶格失配。尽管对于某些刚生长的薄膜已经看到了类似畴的磁性结构,并且与基片引起的应力和膜厚有关,但是对于在相同条件下在同一对基片上生长的其他薄膜,还没有发现磁性结构。在这项研究中,我们使用上述衬底通过脉冲激光沉积在一定温度范围内生长了薄膜,以确定生长与应力感应的磁性结构之间的关系。扫描隧道,原子力和磁力显微镜的结果,与温度有关的磁化强度和与结构有关的矫顽力的测量结果表明了生长与磁性能之间的关系。仅在最高温度(800摄氏度)下生长的较厚膜才观察到间隔为150 nm至200 nm的迷宫状畴结构。平面内磁场的施加将这些畴结构转换为带状畴,其间隔和平面外分量随着磁场的增加而减小。 !10

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