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Scaling of domain cascades in stripe and skyrmion phases

机译:条带化和天空化阶段中域级联的缩放

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The origin of deterministic macroscopic properties often lies in microscopic stochastic motion. Magnetic fluctuations that manifest as domain avalanches and chaotic magnetization jumps exemplify such stochastic motion and have been studied in great detail. Here we report Fourier space studies of avalanches in a system exhibiting competing magnetic stripe and skyrmion phase using a soft X-ray speckle metrology technique. We demonstrate the existence of phase boundaries and underlying critical points in the stripe and skyrmion phases. We found that distinct scaling and universality classes are associated with these domain topologies. The magnitude and frequency of abrupt magnetic domain jumps observed in the stripe phase are dramatically reduced in the skyrmion phase. Our results provide an incisive way to probe and understand phase stability in systems exhibiting complex spin topologies.
机译:确定性宏观性质的起源通常在于微观随机运动。表现为磁畴雪崩和混沌磁化跃迁的磁涨落就是这种随机运动的例证,并且已经进行了详细的研究。在这里,我们报告使用软X射线散斑计量技术在展示竞争性磁条和天生相的系统中进行雪崩的傅立叶空间研究。我们证明了条纹和天生相中存在相界和潜在的临界点。我们发现,不同的扩展级别和通用性类别与这些域拓扑相关。在条带相中观察到的突然磁畴跃变的幅度和频率在天生离子相中显着降低。我们的结果提供了一种探查和理解表现出自旋拓扑结构的系统中的相稳定性的精确方法。

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