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Switching processes and switching reproducibility in ferromagnetic ring structures

机译:铁磁环结构中的切换过程和切换再现性

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We present an experimental study of the reproducibility of the different switching processes occurring in rings. Using superconducting quantum interference device and magnetoresistance measurements, we can measure hysteresis loops of arrays of rings and single structures at varying temperatures and thereby separate the influence of thermal excitations and defects (extrinsic and intrinsic). We find that the temperature dependence of the switching fields and their distributions can be correlated with the different physical processes occurring during different transitions. Measurements of the angular dependence of the switching fields of a single ring allow us to distinguish the contributions of extrinsic and intrinsic defects to the switching field distributions and, counterintuitively, it is established that transitions involving nucleation processes are less prone to defects and thermal excitations than processes involving domain-wall or vortex core depinning and propagation.
机译:我们提出了对环中发生的不同开关过程的重现性的实验研究。使用超导量子干涉仪和磁阻测量,我们可以在变化的温度下测量环和单个结构阵列的磁滞回线,从而分离热激发和缺陷(本征和本征)的影响。我们发现,开关场及其分布的温度依赖性可以与在不同过渡期间发生的不同物理过程相关。通过测量单个环的转换场的角度相关性,我们可以区分外在和固有缺陷对转换场分布的贡献,并且与直觉相反,可以确定,与成核过程相关的跃迁比缺陷更容易发生缺陷和引起热激发。涉及畴壁或涡旋核固定和传播的过程。

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