等离子体子
表面等离子体激元
光学
光电子学
材料科学
能量转换效率
极化(电化学)
超材料
光子学
表面等离子体子
物理
化学
物理化学
作者
Feifei Liu,Dongyi Wang,Han Zhu,Xiyue Zhang,Tong Liu,Shulin Sun,Xinping Zhang,Qiong He,Lei Zhou
标识
DOI:10.1002/lpor.202201001
摘要
Abstract A device that can couple propagating light into surface plasmon polaritons (SPPs) focused into a small region is highly desired for on‐chip photonics applications (e.g., energy‐harvesting, sensing, etc.). However, current technologies suffer from large device footprint, low working efficiency, and insufficient light‐manipulation freedom. Here, a generic approach for designing plasmonic lenses to generate predesigned vector SPP vortices with high efficiencies is established. Constructed with a set of meta‐atoms exhibiting tailored reflection phases and polarization‐conversion capabilities, the devices can convert normally incident circularly polarized light into predesigned vector SPP vortices with high efficiencies, due to both phase and polarization matching. As the illustrations, this study experimentally demonstrates directional SPP conversion (coupling efficiency: 35%; utilization efficiency: 98%) and SPP focusing effect at the wavelength of 1064 nm, with two meta‐couplers in stripe and arc shapes, respectively. Finally, a ring‐shaped meta‐coupler is designed/fabricated, and the generation of a vector SPP vortex with significantly enhanced efficiency as compared to previous schemes is experimentally demonstrated. The results pave the way for realizing on‐chip plasmonic devices to efficiently utilize SPPs with minimal footprints.
科研通智能强力驱动
Strongly Powered by AbleSci AI