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Femtosecond optical orientation triggering magnetization precession in epitaxial EuO films

机译:飞秒光学取向触发外延EuO薄膜磁化进动

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Light-induced magnetization response unfolding on a temporal scale down to femtoseconds presents a way to convey information via spin manipulation. The advancement of the field requires exploration of new materials implementing various mechanisms for ultrafast magnetization dynamics. Here, pump-probe measurements of EuO-based ferromagnets by a time-resolved two-colour stroboscopic technique are reported. Epitaxial films of the pristine semiconductor and metallic Gd-doped EuO demonstrate photo-induced magnetization precession. Comparative experimental studies of both systems are carried out varying temperature, magnetic field, and polarization light helicity of the pump beam, followed by numerical estimates. The study establishes optical spin orientation by the electronic transition 4f75d0 → 4f65d1 as a mechanism triggering collective magnetization precession in these materials. The results suggest applications of EuO-based systems in optoelectronics and spintronics.
机译:光致磁化反应展开时间范围内飞秒了传达信息的方式通过旋转操作。场的发展需要探索新材料实现各种机制超快的磁化动力学。pump-probe EuO-based测量铁磁物质时间分辨双色频闪技术报告。原始的半导体和金属Gd-doped去年同期的。欧元上升至演示photo-induced磁化旋进。两个系统进行不同温度、磁场,极化光螺旋性泵的梁,紧随其后的是数值估计。取向的电子跃迁4 f75d0→4 f65d1作为一种机制引发的集体在这些材料磁化进动。结果表明EuO-based系统的应用程序在光电子学和自旋电子学。

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