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Ultrafast demagnetization in iron: Separating effects by their nonlinearity

机译:铁中的超快退磁:通过非线性分离效应

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摘要

The laser-driven ultrafast demagnetization effect is one of the long-standing problems in solid-state physics. The time scale is given not only by the transfer of energy, but also by the transport of angular momentum away from the spin system. Through a double-pulse experiment resembling two-dimensional spectroscopy, we separate the different pathways by their nonlinear properties. We find (a) that the loss of magnetization within 400 fs is not affected by the previous excitations (linear process), and (b) we observe a picosecond demagnetization contribution that is strongly affected by the previous excitations. Our experimental approach is useful not only for studying femtosecond spin dynamics, but can also be adapted to other problems in solid-state dynamics.
机译:激光驱动的超快退磁效果是固态物理学中长期存在的问题之一。时间尺度不仅通过能量的传递来确定,还通过角动量从自旋系统的传递来给出。通过类似于二维光谱的双脉冲实验,我们通过其非线性特性来分离不同的路径。我们发现(a)400 fs内的磁化损失不受先前激励的影响(线性过程),并且(b)观察到皮秒退磁的影响受先前激励的强烈影响。我们的实验方法不仅对研究飞秒自旋动力学有用,而且还可以适应固态动力学中的其他问题。

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