Suto Hirofumi, Kanao Taro, Nagasawa Tazumi, Mizushima Koichi, Sato Rie
Corporate Research and Development Center, Toshiba Corporation, 1, Komukai-Toshiba-cho, Saiwai-ku, Kawasaki, 212-8582, Japan.
Sci Rep. 2017 Oct 23;7(1):13804. doi: 10.1038/s41598-017-13770-w.
Magnetization switching of high-anisotropy nanomagnets by a small magnetic field is a key challenge in developing future magnetic nanodevices. In this paper, we experimentally demonstrate magnetization switching of a perpendicularly magnetized nanomagnet induced solely by an in-plane circularly polarized microwave magnetic field. Applying a microwave field with an amplitude below 5% of the anisotropy field induces large ferromagnetic resonance excitation, which results in magnetization switching even in the absence of a dc field. This kind of magnetization switching is induced by a microwave field with a duration of 0.5 ns and is clearly dependent on the rotation direction of the microwave field.
通过小磁场实现高各向异性纳米磁体的磁化翻转是未来磁性纳米器件发展中的一项关键挑战。在本文中,我们通过实验证明了仅由面内圆极化微波磁场诱导的垂直磁化纳米磁体的磁化翻转。施加幅度低于各向异性场5%的微波场会引发大的铁磁共振激发,即使在没有直流场的情况下也会导致磁化翻转。这种磁化翻转由持续时间为0.5纳秒的微波场诱导,并且明显依赖于微波场的旋转方向。