Mentink J H
Radboud University Nijmegen, Institute for Molecules and Materials, Heijendaalseweg 135, 6525 AJ, Nijmegen, Netherlands.
J Phys Condens Matter. 2017 Nov 15;29(45):453001. doi: 10.1088/1361-648X/aa8abf.
In recent years, the optical control of exchange interactions has emerged as an exciting new direction in the study of the ultrafast optical control of magnetic order. Here we review recent theoretical works on antiferromagnetic systems, devoted to (i) simulating the ultrafast control of exchange interactions, (ii) modeling the strongly nonequilibrium response of the magnetic order and (iii) the relation with relevant experimental works developed in parallel. In addition to the excitation of spin precession, we discuss examples of rapid cooling and the control of ultrafast coherent longitudinal spin dynamics in response to femtosecond optically induced perturbations of exchange interactions. These elucidate the potential for exploiting the control of exchange interactions to find new scenarios for both faster and more energy-efficient manipulation of magnetism.
近年来,交换相互作用的光学控制已成为磁序超快光学控制研究中一个令人兴奋的新方向。在此,我们回顾了近期关于反铁磁系统的理论工作,这些工作致力于:(i)模拟交换相互作用的超快控制;(ii)对磁序的强非平衡响应进行建模;以及(iii)与并行开展的相关实验工作之间的关系。除了自旋进动的激发,我们还讨论了快速冷却的例子以及响应飞秒光诱导交换相互作用微扰的超快相干纵向自旋动力学的控制。这些阐明了利用交换相互作用的控制来寻找更快且更节能的磁性操纵新方案的潜力。