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Magnetic microstructures from magnetic force microscopy and Monte Carlo simulation in CoFe-Ag-Cu granular films

机译:CoFe-Ag-Cu颗粒薄膜中磁力显微镜的磁性显微结构和蒙特卡洛模拟

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摘要

CoFe-Ag-Cu granular films, prepared by rf sputtering, displayed magnetic domain microstructures for ferromagnetic concentrations above about 32% at, and below the percolation threshold. All samples have a fcc structure with an (111) texture perpendicular to the film plane. Magnetic force microscopy (MFM) showed a variety of magnetic domain microstructures, extremely sensitive to the magnetic history of the sample, which arise from the balance of the ferromagnetic exchange, the dipolar interactions and perpendicular magnetocrystalline anisotropy, MFM images indicate that in virgin samples, magnetic bubble domains with an out-of-plane component of the magnetization are surrounded by a quasicontinuous background of opposite magnetization domains. The application of a magnetic field in different geometries drastically modifies the microstructure of the system in the remanent state: i) for an in-plane field, the MFM images show that most of the magnetic moments are aligned along the film plane, ii) for an out-of-plane field, the MFM signal increases about one order of magnitude, and out-of-plane striped domains with alternating up and down magnetization are stabilized. Numerical simulations show that a variety of metastable domain structures (similar to those observed experimentally) can be reached, depending on magnetic history, in systems with competing perpendicular anisotropy, exchange and dipolar interactions.
机译:通过射频溅射制备的CoFe-Ag-Cu粒状薄膜在铁磁浓度高于和低于渗滤阈值时显示出铁磁浓度的磁畴微结构。所有样品均具有fcc结构,该结构具有垂直于薄膜平面的(111)纹理。磁力显微镜(MFM)显示了各种磁畴微结构,这些结构对样品的磁历史极为敏感,这是由于铁磁交换,偶极相互作用和垂直磁晶各向异性的平衡引起的,MFM图像表明,在原始样品中,具有磁化的平面外分量的磁气泡域被相反磁化域的准连续背景包围。在不同的几何形状中施加磁场会极大地改变系统在剩余状态下的微观结构:i)对于平面内场,MFM图像显示大多数磁矩沿薄膜平面排列,ii)在平面外磁场中,MFM信号增加大约一个数量级,并且具有交替上下磁化的平面外带状磁畴稳定。数值模拟表明,在相互竞争的垂直各向异性,交换和偶极相互作用的系统中,取决于磁历史,可以达到各种亚稳态畴结构(类似于实验观察到的结构)。

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