论文标题
直接探测平面几何形状中强木偶联耦合
Direct probing of strong magnon-photon coupling in a planar geometry
论文作者
论文摘要
我们证明了使用Brillouin光散射光谱在平面几何形状中直接探测强镁晶状体耦合。宏伟的杂种系统包括一个分裂环的谐振器,该谐振器带有200 nm和2.46 $μ$ m厚度的外部YTTrium铁石榴石薄膜。 Brillouin光散射测量与微波光谱测量相结合,其中偏置磁场和微波激发频率均变化。 200 nm厚的Yig电影的合作性为4.5,对于2.46 $ $ $ $ m thick yig胶片,发现了137.4的更大合作。我们表明,布里鲁因光散射是探测木磷层极化子的镁特征的优势,而微波吸收对混合激发的光子特征更敏感。对于未来的连贯信息技术中的宏伟混合系统的潜在整合至关重要的是微型平面设备设计,而我们的结果是这方面的第一个垫脚石。此外,Brillouin光散射成功地检测出宏伟的混合动力激发是从光学信号上升到杂种量子系统中量子信号到微波式的必要步骤。
We demonstrate direct probing of strong magnon-photon coupling using Brillouin light scattering spectroscopy in a planar geometry. The magnonic hybrid system comprises a split-ring resonator loaded with epitaxial yttrium iron garnet thin films of 200 nm and 2.46 $μ$m thickness. The Brillouin light scattering measurements are combined with microwave spectroscopy measurements where both biasing magnetic field and microwave excitation frequency are varied. The cooperativity for the 200 nm-thick YIG films is 4.5, and larger cooperativity of 137.4 is found for the 2.46 $μ$m-thick YIG film. We show that Brillouin light scattering is advantageous for probing the magnonic character of magnon-photon polaritons, while microwave absorption is more sensitive to the photonic character of the hybrid excitation. A miniaturized, planar device design is imperative for the potential integration of magnonic hybrid systems in future coherent information technologies, and our results are a first stepping stone in this regard. Furthermore, successfully detecting the magnonic hybrid excitation by Brillouin light scattering is an essential step for the up-conversion of quantum signals from the optical to the microwave regime in hybrid quantum systems.