论文标题
抗fiferromagnet的超快激发后强大的磁性顺序
Robust magnetic order upon ultrafast excitation of an antiferromagnet
论文作者
论文摘要
由于光激发而引起的磁性的超快操纵受电子,晶格和自旋子系统之间的复杂流动和动量流动。虽然通常使用各种模型来描述这些动力学,但一个突出的例子是微观三温度模型(M3TM),与能量流和磁性动力学的系统性比较稀少。在这里,我们将M3TM应用于分层抗铁磁体GDRH $ _2 $ SI $ _2 $的超快磁性动力学。在使用时间和角度分辨的光发射光谱和时间分辨谐振磁性软X射线衍射的各种泵浦的流动下,在各种泵浦的流动处探索了电子温度,表面铁磁顺序和散装抗铁磁秩序的飞秒动力学。光激发后,表面铁磁顺序和大量的抗铁磁阶阶动力学都表现出两步的消除电磁行为,具有两个相似的时间刻度(<1 ps,〜10 ps),表明局部化的4F和行程传导电子之间的强烈交换耦合。尽管有良好的定性一致性,但M3TM比我们的实验观察结果预测了更大的消极化,这可以通过短暂的,依赖性依赖性的Néel温度在现象学上描述。我们的结果表明,对于超快磁性动力学的定量描述,必须考虑超出平均场描述以外的效果。
The ultrafast manipulation of magnetic order due to optical excitation is governed by the intricate flow of energy and momentum between the electron, lattice and spin subsystems. While various models are commonly employed to describe these dynamics, a prominent example being the microscopic three temperature model (M3TM), systematic, quantitative comparisons to both the dynamics of energy flow and magnetic order are scarce. Here, we apply a M3TM to the ultrafast magnetic order dynamics of the layered antiferromagnet GdRh$_2$Si$_2$. The femtosecond dynamics of electronic temperature, surface ferromagnetic order, and bulk antiferromagnetic order were explored at various pump fluences employing time- and angle-resolved photoemission spectroscopy and time-resolved resonant magnetic soft x-ray diffraction, respectively. After optical excitation, both the surface ferromagnetic order and the bulk antiferromagnetic order dynamics exhibit two-step demagnetization behaviors with two similar timescales (<1 ps, ~10 ps), indicating a strong exchange coupling between localized 4f and itinerant conduction electrons. Despite a good qualitative agreement, the M3TM predicts larger demagnetization than our experimental observation, which can be phenomenologically described by a transient, fluence-dependent increased Néel temperature. Our results indicate that effects beyond a mean-field description have to be considered for a quantitative description of ultrafast magnetic order dynamics.