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超快退磁主导了钴M边处磁散射的能量密度依赖性。

Ultrafast Demagnetization Dominates Fluence Dependence of Magnetic Scattering at Co M Edges.

作者信息

Schneider Michael, Pfau Bastian, Günther Christian M, von Korff Schmising Clemens, Weder David, Geilhufe Jan, Perron Jonathan, Capotondi Flavio, Pedersoli Emanuele, Manfredda Michele, Hennecke Martin, Vodungbo Boris, Lüning Jan, Eisebitt Stefan

机构信息

Max Born Institute for Nonlinear Optics and Short Pulse Spectroscopy, Max-Born-Straße 2A, 12489 Berlin, Germany.

Technische Universität Berlin, Institut für Optik und Atomare Physik, Straße des 17. Juni 135, 10623 Berlin, Germany.

出版信息

Phys Rev Lett. 2020 Sep 18;125(12):127201. doi: 10.1103/PhysRevLett.125.127201.

Abstract

We systematically study the fluence dependence of the resonant scattering cross-section from magnetic domains in Co/Pd-based multilayers. Samples are probed with single extreme ultraviolet (XUV) pulses of femtosecond duration tuned to the Co M_{3,2} absorption resonances using the FERMI@Elettra free-electron laser. We report quantitative data over 3 orders of magnitude in fluence, covering 16  mJ/cm^{2}/pulse to 10 000  mJ/cm^{2}/pulse with pulse lengths of 70 fs and 120 fs. A progressive quenching of the diffraction cross-section with fluence is observed. Compression of the same pulse energy into a shorter pulse-implying an increased XUV peak electric field-results in a reduced quenching of the resonant diffraction at the Co M_{3,2} edge. We conclude that the quenching effect observed for resonant scattering involving the short-lived Co 3p core vacancies is noncoherent in nature. This finding is in contrast to previous reports investigating resonant scattering involving the longer-lived Co 2p states, where stimulated emission has been found to be important. A phenomenological model based on XUV-induced ultrafast demagnetization is able to reproduce our entire set of experimental data and is found to be consistent with independent magneto-optical measurements of the demagnetization dynamics on the same samples.

摘要

我们系统地研究了基于Co/Pd多层膜中磁畴的共振散射截面与fluence的依赖关系。使用FERMI@Elettra自由电子激光,用持续时间为飞秒的单极紫外(XUV)脉冲探测样品,该脉冲调谐到Co M_{3,2}吸收共振。我们报告了fluence跨越3个数量级的定量数据,覆盖16  mJ/cm^{2}/脉冲至10 000  mJ/cm^{2}/脉冲,脉冲长度分别为70 fs和120 fs。观察到衍射截面随fluence逐渐猝灭。将相同脉冲能量压缩到更短脉冲中(这意味着XUV峰值电场增加),会导致Co M_{3,2}边缘的共振衍射猝灭减少。我们得出结论,观察到的涉及短寿命Co 3p芯空位的共振散射的猝灭效应本质上是非相干的。这一发现与之前研究涉及寿命更长的Co 2p态的共振散射的报告形成对比,在那些报告中发现受激发射很重要。基于XUV诱导的超快退磁的现象学模型能够重现我们的整套实验数据,并且发现与对相同样品的退磁动力学进行的独立磁光测量结果一致。

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