论文标题
疫苗磁性自旋波的腔介导的偶联
Cavity-mediated coupling of antiferromagnetic spin waves
论文作者
论文摘要
空间分离振荡器的耦合对于量子和通信技术很有趣。在这项工作中,表明将两个抗铁磁振荡器放置在电磁腔内夫妇与其Terahertz模式合作,并实际上形成了杂交木核 - 抛光模式。这是由从赤铁矿的两个平面平面平面($α$ -fe $ _2 $ o $ $ _3 $)的系统研究中的系统研究支持的,这是根据其温度和分离距离的函数测量的,并在理论上进行了建模。介导腔是由晶体本身形成的,实验是在几毫米且高于室温的实际距离范围内进行的。腔介导的耦合允许通过其几何形状控制并通过共享其组件的属性进行工程化复杂的谐振器。
Coupling of space-separated oscillators is interesting for quantum and communication technologies. In this work, it is shown that two antiferromagnetic oscillators placed inside an electromagnetic cavity couple cooperatively to its terahertz modes and, in effect, hybridized magnon-polariton modes are formed. This is supported by a systematic study of reflection spectra from two parallel-plane slabs of hematite ($α$-Fe$_2$O$_3$), measured as a function of their temperatures and separation distance, and modeled theoretically. The mediating cavity was formed by the crystals themselves and the experiment was performed in a practical distance range of a few millimetres and above room temperature. Cavity-mediated coupling allows for engineering of complex resonators controlled by their geometry and by sharing properties of their components.