Overvig Adam, Yu Nanfang, Alù Andrea
Photonics Initiative, Advanced Science Research Center at the Graduate Center of the City University of New York, New York, New York 10031, USA.
Department of Applied Physics and Applied Mathematics, Columbia University, New York, New York 10027, USA.
Phys Rev Lett. 2021 Feb 19;126(7):073001. doi: 10.1103/PhysRevLett.126.073001.
Quasi-bound states in the continuum (QBICs) are Fano resonant states with long optical lifetimes controlled by symmetry-breaking perturbations. While conventional Fano responses are limited to linear polarizations and do not support tailored phase control, here we introduce QBICs born of chiral perturbations that encode arbitrary elliptical polarization states and enable geometric phase engineering. We thereby design metasurfaces with ultrasharp spectral features that shape the impinging wave front with near-unity efficiency. Our findings extend Fano resonances beyond their conventional limits, opening opportunities for nanophotonics, classical and quantum optics, and acoustics.
连续谱中的准束缚态(QBICs)是具有长光学寿命的法诺共振态,由破缺对称性微扰控制。虽然传统的法诺响应仅限于线性偏振,且不支持定制相位控制,但在此我们引入由手性微扰产生的QBICs,其编码任意椭圆偏振态并实现几何相位工程。我们据此设计出具有超尖锐光谱特征的超表面,能以近乎单位效率塑造入射波前。我们的发现将法诺共振扩展到其传统极限之外,为纳米光子学、经典和量子光学以及声学带来了机遇。