论文标题
通过调谐到Co l $ _3 $共振的X射线光子触发的超快消电钴的电磁过程中发生的电子过程
Electronic processes occurring during ultrafast demagnetization of cobalt triggered by X-ray photons tuned to Co L$_3$ resonance
论文作者
论文摘要
用超短激光脉冲触发的磁化动力学吸引了大量注意力,强烈关注Vis/Nir脉冲激发的动力学。直到最近,才观察到由自由电子激光器(FELS)强烈的X射线脉冲引起的固体材料的强磁反应。触发X射线引起的脱氧化的确切机制尚未完全理解。它们是正在进行的实验和理论研究的主题。在这里,我们介绍了在co多层系统的消灭co多层系统中发生的电子过程的理论分析,该系统被调谐到cobalt的L $ _3 $吸收边缘的X射线脉冲。我们表明,与X射线诱导的CO诱导的消除磁化一样,电子过程在消灭磁势中起主要作用,直到脉冲通量不超过结构性损害阈值。电子过程的影响可以合理地解释可用的实验数据,而无需引入刺激的弹性正向散射机制。
Magnetization dynamics triggered with ultrashort laser pulses has been attracting significant attention, with strong focus on the dynamics excited by VIS/NIR pulses. Only recently, strong magnetic response in solid materials induced by intense X-ray pulses from free-electron lasers (FELs) has been observed. The exact mechanisms that trigger the X-ray induced demagnetization are not yet fully understood. They are subject of on-going experimental and theoretical investigations. Here, we present a theoretical analysis of electronic processes occurring during demagnetization of Co multilayer system irradiated by X-ray pulses tuned to L$_3$-absorption edge of cobalt. We show that, similarly as in the case of X-ray induced demagnetization at M-edge of Co, electronic processes play a predominant role in the demagnetization until the pulse fluence does not exceed the structural damage threshold. The impact of electronic processes can reasonably well explain the available experimental data, without a need to introduce the mechanism of stimulated elastic forward scattering.