论文标题

铁磁合金中磁化磁化的无螺旋性全光转换

Helicity-independent all-optical switching of magnetization in ferrimagnetic alloys

论文作者

Davies, C. S., Mentink, J. H., Kimel, A. V., Rasing, Th., Kirilyuk, A.

论文摘要

我们审查并讨论了磁化的单发螺旋无关的全光切换的过程,通过该切换,在正确的条件下,单个可正常的脱肌激发将磁化化从一个稳定状态切换到另一个稳定状态。在将近十年的时间里,这种现象只有在特定的稀有地球 - 变质金属金属磁合金中始终被观察到了GDFECO的,但是近年来突破性的实验表明,在包括多种多种套件的tbco Alloy(包括TBCO Alloy)中,可以实现相同的行为。无稀土的小母鹿合金MN $ _2 $ ru $ _x $ ga。为了解决允许切换的条件,一系列实验表明,铁磁合金GDFECO和MN $ _2 $ ru $ _x $ ga中的过程对脉冲持续时间,起始温度和合金组合物高度敏感。我们在这里认为,这两种非常不同的铁磁合金所显示的开关通常可以在一个单一的现象学框架中被理解,该框架描述了组成型的sublattices之间的角动量流动,从转子到环境。促进切换的条件源于这些角动量流的特性与角动量储层的大小结合使用。最后,我们在这个充满活力的研究领域提供了前景,重点是与基础物理有关的出色开放问题,同时指出了在技术应用中利用此切换过程的进步。

We review and discuss the process of single-shot helicity-independent all-optical switching of magnetization by which a single suitably-ultrafast excitation, under the right conditions, toggles magnetization from one stable state to another. For almost a decade, this phenomenon was only consistently observed in specific rare-earth-transition-metal ferrimagnetic alloys of GdFeCo, but breakthrough experiments in recent years have revealed that the same behavior can be achieved in a wide range of multi-sublattice magnets including TbCo alloys doped with minute amounts of Gd, Gd/Co and Tb/Co synthetic ferrimagnets, and the rare-earth-free Heusler alloy Mn$_2$Ru$_x$Ga. Aiming to resolve the conditions that allow switching, a series of experiments have shown that the process in the ferrimagnetic alloys GdFeCo and Mn$_2$Ru$_x$Ga is highly sensitive to the pulse duration, starting temperature and the alloy composition. We argue here that the switching displayed by these two very different ferrimagnetic alloys can be generally understood within a single phenomenological framework describing the flow of angular momentum between the constituent sublattices and from the sublattices to the environment. The conditions that facilitate switching stem from the properties of these channels of angular momentum flow in combination with the size of the angular momentum reservoirs. We conclude with providing an outlook in this vibrant research field, with emphasis on the outstanding open questions pertaining to the underlying physics along with noting the advances in exploiting this switching process in technological applications.

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