Bhattacharya Angana, Sarkar Rakesh, Kumar Gagan
Department of Physics, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.
iScience. 2021 Dec 29;25(1):103708. doi: 10.1016/j.isci.2021.103708. eCollection 2022 Jan 21.
The vigorous research on low-loss photonic devices has brought significance to a new kind of electromagnetic excitation, known as toroidal resonances. Toroidal excitation, possessing high-quality factor and narrow linewidth of the resonances, has found profound applications in metamaterial (MM) devices. By the coupling of toroidal dipolar resonance to traditional electric/magnetic resonances, a metamaterial analogue of electromagnetically induced transparency effect (EIT) has been developed. Toroidal induced EIT has demonstrated intriguing properties including steep linear dispersion in transparency windows, often leading to elevated group refractive index in the material. This review summarizes the brief history and properties of the toroidal resonance, its identification in metamaterials, and their applications. Further, numerous theoretical and experimental demonstrations of single and multiband EIT effects in toroidal-dipole-based metamaterials and its applications are discussed. The study of toroidal-based EIT has numerous potential applications in the development of biomolecular sensing, slow light systems, switches, and refractive index sensing.
对低损耗光子器件的深入研究为一种新型电磁激发——环形共振带来了重要意义。环形激发具有高品质因数和窄共振线宽,已在超材料(MM)器件中得到广泛应用。通过将环形偶极共振与传统电/磁共振耦合,已开发出一种电磁诱导透明效应(EIT)的超材料类似物。环形诱导EIT展现出了有趣的特性,包括透明窗口中的陡峭线性色散,这通常会导致材料中的群折射率升高。本综述总结了环形共振的简史和特性、其在超材料中的识别以及它们的应用。此外,还讨论了基于环形偶极的超材料中单波段和多波段EIT效应的大量理论和实验演示及其应用。基于环形的EIT研究在生物分子传感、慢光系统、开关和折射率传感等领域有众多潜在应用。