论文标题

通过在铁磁多层中的光泵来对磁域的超快速扰动

Ultrafast perturbation of magnetic domains by optical pumping in a ferromagnetic multilayer

论文作者

Zusin, Dmitriy, Iacocca, Ezio, Guyader, Loïc Le, Reid, Alexander H., Schlotter, William F., Liu, Tian-Min, Higley, Daniel J., Coslovich, Giacomo, Wandel, Scott F., Tengdin, Phoebe M., Patel, Sheena K. K., Shabalin, Anatoly, Hua, Nelson, Hrkac, Stjepan B., Nembach, Hans T., Shaw, Justin M., Montoya, Sergio A., Blonsky, Adam, Gentry, Christian, Hoefer, Mark A., Murnane, Margaret M., Kapteyn, Henry C., Fullerton, Eric E., Shpyrko, Oleg, Dürr, Hermann A., Silva, T. J.

论文摘要

已知在空间不均匀的磁纹理的超快光学泵送可引起远程平衡的自旋传输效果。在这里,我们将Ultrafast X射线衍射与前所未有的动态范围与铁磁性COFE/NI多层型中迷宫域网络的激光诱导的动力学研究。我们检测到各向同性,奇数,磁衍射环最高第5阶。所有三个衍射环的幅度在1.6 ps之内淬灭的不同程度。此外,在淬火过程中,所有三个检测到的衍射环均增长了15%,径向收缩了6%。我们能够通过对三个检测到的衍射环的端依赖性淬灭的傅立叶分析来严格量化域壁的31%超快扩大。衍射环的拓宽被解释为域相干长度的减小,但是环半径的移位虽然发生了明确的发生,但仍无法解释。特别是,我们证明了可以排除域壁拓宽所解释的径向转移。随着我们数据的前所未有的动态范围,我们的结果提供了令人信服的证据,表明迷宫结构结构在远程平衡条件下在超快速度下在空间上受到扰动,尽管诱导扰动的机制尚未阐明。

Ultrafast optical pumping of spatially nonuniform magnetic textures is known to induce far-from-equilibrium spin transport effects. Here, we use ultrafast x-ray diffraction with unprecedented dynamic range to study the laser-induced dynamics of labyrinth domain networks in ferromagnetic CoFe/Ni multilayers. We detected azimuthally isotropic, odd order, magnetic diffraction rings up to 5th order. The amplitudes of all three diffraction rings quench to different degrees within 1.6 ps. In addition, all three of the detected diffraction rings both broaden by 15% and radially contract by 6% during the quench process. We are able to rigorously quantify a 31% ultrafast broadening of the domain walls via Fourier analysis of the order-dependent quenching of the three detected diffraction rings. The broadening of the diffraction rings is interpreted as a reduction in the domain coherence length, but the shift in the ring radius, while unambiguous in its occurrence, remains unexplained. In particular, we demonstrate that a radial shift explained by domain wall broadening can be ruled out. With the unprecedented dynamic range of our data, our results provide convincing evidence that labyrinth domain structures are spatially perturbed at ultrafast speeds under far-from-equilibrium conditions, albeit the mechanism inducing the perturbations remains yet to be clarified.

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