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Pinning-Dependent Field-Driven Domain Wall Dynamics and Thermal Scaling in an Ultrathin Pt/Co/Pt Magnetic Film

机译:超薄Pt / Co / Pt磁性膜中依赖于钉扎的场驱动畴壁动力学和热缩放

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摘要

Magnetic-field-driven domain wall motion in an ultrathin Pt/Co(0.45 nm)/Pt ferromagnetic film with perpendicular anisotropy is studied over a wide temperature range. Three different pinning dependent dynamical regimes are clearly identified: the creep, the thermally assisted flux flow, and the depinning, as well as their corresponding crossovers. The wall elastic energy and microscopic parameters characterizing the pinning are determined. Both the extracted thermal rounding exponent at the depinning transition, ψ=0.15, and the Larkin length crossover exponent, φ=0.24, fit well with the numerical predictions.
机译:研究了在宽温度范围内具有垂直各向异性的超薄Pt / Co(0.45 nm)/ Pt铁磁膜中磁场驱动的畴壁运动。清楚地确定了三种不同的依赖于钉扎的动力状态:蠕变,热辅助磁通流量,钉扎以及它们相应的跨接。确定表征钉扎的壁弹性能和微观参数。拔钉转变时提取的热舍入指数ψ= 0.15和拉金长度交叉指数φ= 0.24都与数值预测非常吻合。

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