Bobowski Kamil, Gleich Markus, Pontius Niko, Schüßler-Langeheine Christian, Trabant Christoph, Wietstruk Marko, Frietsch Björn, Weinelt Martin
Freie Universität Berlin, Fachbereich Physik, Arnimallee 14, 14195 Berlin, Germany.
J Phys Condens Matter. 2017 Jun 14;29(23):234003. doi: 10.1088/1361-648X/aa6c92. Epub 2017 Apr 11.
We studied the magnetization dynamics of gadolinium metal after femtosecond laser excitation recording the x-ray magnetic circular dichroism in reflection (XMCD-R) at the Gd M absorption edge. Varying the photon energy of the pump pulse allows us to change the initial energy distribution of photoexcited carriers. The overall similar response for excitation with 0.95, 1.55 and 3.10 eV photons at comparable pump fluences indicates that ultrafast ballistic carrier transport leads to a homogeneous energy distribution on the femtosecond timescale in the probed sample volume. Differences are observed in the initial ultrafast demagnetization magnitude. They are attributed to an enhanced spin-flip probability at higher electron energies characterizing the non-thermal electron distribution.
我们研究了飞秒激光激发后钆金属的磁化动力学,记录了钆M吸收边处反射式X射线磁圆二色性(XMCD-R)。改变泵浦脉冲的光子能量使我们能够改变光激发载流子的初始能量分布。在可比的泵浦通量下,用0.95、1.55和3.10 eV光子激发时的总体相似响应表明,超快弹道载流子输运在飞秒时间尺度上导致被探测样品体积内的能量分布均匀。在初始超快退磁幅度上观察到差异。这些差异归因于在表征非热电子分布的较高电子能量处增强的自旋翻转概率。