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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Modification of the Domain Wall Structure and Generation of Submicron Magnetic Formations by Local Optical Irradiation
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Modification of the Domain Wall Structure and Generation of Submicron Magnetic Formations by Local Optical Irradiation

机译:畴壁结构的改性和通过局部光辐射产生亚微米磁性形成

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Experimental and theoretical investigations are made of the generation of vertical Bloch lines in a magnetic iron garnet film exposed to pulsed optical radiation. High-speed photography and anisotropic dark-field microscopy are used to study characteristic features of the generation of Bloch lines and domain structure relaxation processes after the local action of a laser pulse. Optimum optical irradiation parameters to ensure the controlled generation of Bloch lines are established. A theoretical model is developed which links the generation of Bloch lines to the migration of domain walls induced by local changes in the distribution of the degaussing fields caused by a reduction in magnetization with temperature at the optical radiation focusing point. The experimental results indicate that the controlled formation of magnetic structures smaller than or of the order of 0.1 μm by local optical irradiation is quite feasible.
机译:对暴露于脉冲光辐射的磁性铁石榴石薄膜中的垂直布洛赫线的产生进行了实验和理论研究。高速摄影和各向异性暗场显微镜用于研究激光脉冲局部作用后Bloch线的生成和畴结构弛豫过程的特征。最佳光学辐照参数可确保建立受控的Bloch线生成。建立了一个理论模型,该模型将Bloch线的生成与畴壁的迁移联系起来,畴壁的迁移是由消磁场分布的局部变化引起的,该消磁场的分布是由于光辐射焦点处的磁化强度随温度的降低而引起的。实验结果表明,通过局部光辐照控制形成小于或等于0.1μm的磁性结构是非常可行的。

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