论文标题

非连线阶段的非常规的自旋动力学

Unconventional spin dynamics in the non-collinear phase of a ferrimagnet

论文作者

Krichevsky, D. M., Gusev, N. A., Ignatyeva, D. O., Prisyazhnyuk, A. V., Semuk, E. Yu., Polulyakh, S. N., Berzhansky, V. N., Zvezdin, A. K., Belotelov, V. I.

论文摘要

包含几种部分补偿的磁性转质的铁磁铁被认为是全光数据存储和基于自旋波的超快通信的最有前途的材料。铁ima虫有两个磁相:共线和非连线性。到现在为止,铁磁体中的自旋动力学主要是在共线状态下研究的,而没有太多注意磁相的种类。在这里,我们还研究了激光诱导的非共线相的稀土铁石榴石膜中的超快自旋动力学。我们确定了磁相对激发自旋模式的关键影响,这使我们能够发现以前被忽略的几种突出效应。特别是,非共线性使准抗铁磁模式对外部磁场敏感,并将其频率接近准磁磁模式的频率。后者在磁化补偿点附近最大化,并朝着共线相消失。壮观的是,在相变时,准磁性模式变软,其幅度显着增加达到7°。这为非热数据存储和数据处理的超快控制超快控制了新的机会。

Ferrimagnets containing several partially compensated magnetic sublattices are considered the most promising materials for all-optical data storage and for ultrafast communications based on spin waves. There are two magnetic phases of the ferrimagnets: collinear and non-collinear ones. Up to now spin dynamics in ferrimagnets has been studied mostly in the collinear state without paying much attention to the kind of the magnetic phase. Here we investigate laser induced ultrafast spin dynamics in a rare-earth iron garnet film in the noncollinear phase as well. We identify a crucial influence of the magnetic phase on the excited spin modes which allowed us to discover several prominent effects previously overlooked. In particular, the non-collinearity makes the quasi-antiferromagnetic mode sensitive to the external magnetic field and brings its frequency close to the frequency of the quasiferromagnetic mode. The latter maximizes near the magnetization compensation point and vanishes towards the collinear phase. Spectacularly, at the phase transition the quasiferromagnetic mode becomes soft and its amplitude significantly increases reaching 7°. This opens new opportunities for the ultrafast control of spins in ferrimagnets for nonthermal data storage and data processing.

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