论文标题
将宽带Terahertz偶极子耦合到显微镜谐振器
Coupling broadband terahertz dipoles to microscale resonators
论文作者
论文摘要
Spintronic发射器是一类独特的Terahertz(THZ)来源,因为它们的准二维几何形状,从而有能力与田野附近的谐振器相连。发射器的全球激发通常会阻碍局部THZ偶极子与谐振器结构的各个模式之间的耦合机制的复杂细节。在这里,我们演示了旋转发射极在局部Terahertz源与由结构化金属环境介导的远场光线之间的耦合强度的空间映射。对于弓形领带的几何形状,实验结果是通过提供微观耦合机制的见解来重现的。通过在拆分环谐振元素和线性阵列中提取THZ模式结构来展示该技术的广泛适用性。通过这些发展,可以访问具有量身定制光谱和角度发射轮廓的平面THZ源。
Spintronic emitters are a unique class of terahertz (THz) sources due to their quasi-two-dimensional geometry and thereby their capability to couple to resonator near fields. Global excitation of the emitters often obstructs the intricate details of the coupling mechanisms between local THz dipoles and the individual modes of resonator structures. Here, we demonstrate the spatial mapping of the coupling strength between a local terahertz source on a spintronic emitter and far-field light mediated by a structured metallic environment. For a bow-tie geometry, experimental results are reproduced by a numerical model providing insights into the microscopic coupling mechanisms. The broad applicability of the technique is showcased by extracting the THz mode structure in split-ring resonator metasurfaces and linear arrays. With these developments, planar THz sources with tailored spectral and angular emission profiles are accessible.