Mie-resonant metaphotonics is a rapidly developing field that employs the physics of Mie resonances to control light at the nanoscale. Mie resonances are excited in high-refractive …
The study of magneto-optical absorption has stimulated diverse energy-technology-related explorations, showing potential in breaking the current theoretical efficiency limits of energy …
A Chang, YL Zhu, S Li, L Chen, J Chen, Y Zhou… - Physical Review B, 2023 - APS
Efficient transverse magneto-optical Kerr effect (TMOKE) at the nanoscale has attracted great interest in recent years due to the highly desirable properties it offers in nonreciprocal …
Nonreciprocal devices, including optical isolators, phase shifters, and amplifiers, are pivotal for advanced optical systems. However, exploiting natural materials is challenging due to …
X Chen, R Leng, K Liu, C Guo, Z Zhu, S Qin… - Optics & Laser …, 2023 - Elsevier
Actively tunable metasurfaces have widespread applications in optics from light modulation, beam steering to LiDAR and many others. Recently, lithium niobate (LN) based …
D Hao, J Liu, P Zou, Y Zhang, R Moro… - Laser & Photonics …, 2024 - Wiley Online Library
In the rapidly evolving terahertz (THz) technology field, all‐dielectric metasurfaces (ADMs) have emerged as a significant driving force, potentially can transform various industries and …
S Gao, Y Ota, F Tian, T Liu, S Iwamoto - Optics Express, 2023 - opg.optica.org
All-dielectric metasurfaces based on ferrimagnetic iron garnets are a promising platform for realizing ultra-compact magneto-optical (MO) devices with low loss. However, ferrimagnetic …
Q Tang, D Zhang, T Liu, W Liu, Q Liao, J He, S Xiao… - Optics Letters, 2023 - opg.optica.org
The magneto-optical Faraday and Kerr effects are widely used in modern optical devices. In this Letter, we propose an all-dielectric metasurface composed of perforated magneto …
X Zhang, F Yang, C Jiang, S Xu, M Li - ACS Photonics, 2023 - ACS Publications
Metasurfaces composed of ultrathin subwavelength meta-atoms have attracted intensive attention due to their exceptional abilities to freely manipulate light waves, resulting in …