论文标题
浮子腔电磁学
Floquet Cavity Electromagnonics
论文作者
论文摘要
Hybrid Magnonics最近吸引了密集的关注,作为连贯信息处理的有前途的平台。尽管它具有快速的发展,但对木蛋白与其他信息载体的相互作用(尤其是电磁系统中的微波光子)的相互作用一直很长,这很长期以来一直缺失,这显着限制了混合木纳学的广泛应用。在这里,我们表明,通过将Floquet Engineering引入腔电磁量,可以实现对磁通微波光子耦合的连贯控制。利用Floquet驱动器的周期性时间调制,我们的首个浮球电磁系统可以按需操纵杂交型电磁模式之间的相互作用。此外,我们在这样的系统中演示了一种新的耦合示意:floquet ultrastrong耦合,其中floquet分裂与两个相互作用模式的水平间距相当甚至大,从而导致旋转波近似的崩溃。我们的发现为基于镁的相干信号处理打开了新的方向。
Hybrid magnonics has recently attracted intensive attentions as a promising platform for coherent information processing. In spite of its rapid development, on-demand control over the interaction of magnons with other information carriers, in particular microwave photons in electromagnonic systems, has been long missing, significantly limiting the broad applications of hybrid magnonics. Here, we show that by introducing Floquet engineering into cavity electromagnonics, coherent control on the magnon-microwave photon coupling can be realized. Leveraging the periodic temporal modulation from a Floquet drive, our first-of-its-kind Floquet cavity electromagnonic system can manipulate the interaction between hybridized cavity electromagnonic modes on demand. Moreover, we demonstrate a new coupling regime in such systems: the Floquet ultrastrong coupling, where the Floquet splitting is comparable with or even larger than the level spacing of the two interacting modes, resulting in the breakdown of the rotating wave approximation. Our findings open up new directions for magnon-based coherent signal processing.