论文标题
由左手微波驱动的非旋转旋转波
Nonreciprocal Spin Waves Driven by Left-Hand Microwaves
论文作者
论文摘要
这是一种传统的观点,即由于角动量保护的限制,左手微波无法有效地激发铁磁性的自旋波(SW)。在这项工作中,我们表明,在微波炉和预击磁力之间存在强椭圆形不匹配的情况下,左手微波炉可以驱动非倒数SW。预测临界频率,左手微波炉无法激发SWS。远离它,SW振幅敏感地取决于左手微波的椭圆度,与右手驱动的情况形成鲜明对比。通过调整微波频率,我们观察到铁磁单层中可切换的SW非循环性。提出了一个依赖模式的相互灭绝因子来解释这一发现。我们的工作促进了对光子马格诺转换的理解,并为在纳米级镁中设计二极管样功能铺平了道路。
It is a conventional wisdom that a left-hand microwave cannot efficiently excite the spin wave (SW) in ferromagnets, due to the constraint of angular momentum conservation. In this work, we show that the left-hand microwave can drive nonreciprocal SWs in the presence of a strong ellipticity-mismatch between the microwave and precessing magnetization. A critical frequency is predicted, at which the left-hand microwave cannot excite SWs. Away from it the SW amplitude sensitively depends on the ellipticity of left-hand microwaves, in sharp contrast to the case driven by right-hand ones. By tuning the microwave frequency, we observe a switchable SW non-reciprocity in a ferromagnetic single layer. A mode-dependent mutual demagnetizing factor is proposed to explain this finding. Our work advances the understanding of the photon-magnon conversion, and paves the way to designing diode-like functionalities in nano-scaled magnonics.