论文标题
径向连续的圆锥状态,用于极化不变的纳米光子学
Radial bound states in the continuum for polarization-invariant nanophotonics
论文作者
论文摘要
由连续体(BICS)中结合状态的物理学支撑的全核纳米素体在纳米级的光操纵,频率转换和光学传感中表现出了突破性的应用。领先的BIC实施范围从具有局部电磁场的孤立纳米antennas到具有可控共振质量(Q)因子的对称性保护的跨境。但是,它们要么需要带有复杂的光束塑料光学元件的结构化光照明,要么需要大型的极化敏感单元细胞的制造强大阵列,因此阻碍了量身定制的纳米光量应用和片上积分。在这里,我们在连续体(径向BICS)中引入了径向准绑定的状态,作为一类新的径向分布的电磁模式,该模式由介电棒谐振器环中的结构不对称控制。 Radial BIC平台提供了极化和可调的高Q共振,在低至2 $μ$ M $^2 $的超型足迹中,在近距离近距离上有强大的增强。我们证明了可见的径向BIC实现,可用于敏感的生物分子检测,并增强了从过渡金属二色代基层的单层,开辟了新的观点,用于紧凑,频谱选择性和极化不合格的MetadeVices,以实现多功能轻型 - 触发功能的耦合,多重效力,高密度和高密度的Photments-chip和-CHIPs-chip和-CHIPs-CHIP和-CHIPs-CHIP和-CHIPs-CHIP合成。
All-dielectric nanophotonics underpinned by the physics of bound states in the continuum (BICs) have demonstrated breakthrough applications in nanoscale light manipulation, frequency conversion and optical sensing. Leading BIC implementations range from isolated nanoantennas with localized electromagnetic fields to symmetry-protected metasurfaces with controllable resonance quality (Q) factors. However, they either require structured light illumination with complex beam-shaping optics or large, fabrication-intense arrays of polarization-sensitive unit cells, hindering tailored nanophotonic applications and on-chip integration. Here, we introduce radial quasi bound states in the continuum (radial BICs) as a new class of radially distributed electromagnetic modes controlled by structural asymmetry in a ring of dielectric rod pair resonators. The radial BIC platform provides polarization-invariant and tunable high-Q resonances with strongly enhanced near fields in an ultracompact footprint as low as 2 $μ$m$^2$. We demonstrate radial BIC realizations in the visible for sensitive biomolecular detection and enhanced second-harmonic generation from monolayers of transition metal dichalcogenides, opening new perspectives for compact, spectrally selective, and polarization-invariant metadevices for multi-functional light-matter coupling, multiplexed sensing, and high-density on-chip photonics.