论文标题
通过磁性元整形的磁性和电共振增强光发射
Enhanced light emission by magnetic and electric resonances in dielectric metasurfaces
论文作者
论文摘要
我们证明了高量子屈服分子的发射增强,该分子与由多晶硅纳米颗粒的定期阵列形成的介电元面积结合。纳米颗粒的辐射耦合是由平面衍射介导的,导致集体MIE散射共振或MIE表面晶格共振(M-SLR)的形成,并具有明显的窄线宽度。这些狭窄的线宽度以及单个Si纳米颗粒的固有电和磁偶极矩可以解决电和磁M-SLR。起点依赖于偏振的灭绝测量值和高敏锐表面积分模拟明确表明磁性M-SLR是由内部和脱离平面磁性偶极子产生的,而电气M-SLR则是由于平面电动偶极子造成的。观察到了分子发射光谱的明显变化,在耦合到电M-SLR的分子的定义方向上,发射的发射几乎增强,分子的发射耦合到磁性M-SLRs的发射5倍。这些测量结果证明了电介质跨面对发射控制和增强的潜力,并使用集体电和磁共振开放了新的机会,以诱导不对称的散射和发射。
We demonstrate an enhanced emission of high quantum yield molecules coupled to dielectric metasurfaces formed by periodic arrays of polycrystalline silicon nanoparticles. Radiative coupling of the nanoparticles, mediated by in-plane diffraction, leads to the formation of collective Mie scattering resonances or Mie surface lattice resonances (M-SLRs), with remarkable narrow line widths. These narrow line widths and the intrinsic electric and magnetic dipole moments of the individual Si nanoparticles allow to resolve electric and magnetic M-SLRs. Incidence angle- and polarization-dependent extinction measurements and high-accuracy surface integral simulations show unambiguously that magnetic M-SLRs arise from in- and out-of-plane magnetic dipoles, while electric M-SLRs are due to in-plane electric dipoles. Pronounced changes in the emission spectrum of the molecules are observed, with almost a 20-fold enhancement of the emission in defined directions of molecules coupled to electric M-SLRs, and a 5-fold enhancement of the emission of molecules coupled to magnetic M-SLRs. These measurements demonstrate the potential of dielectric metasurfaces for emission control and enhancement, and open new opportunities to induce asymmetric scattering and emission using collective electric and magnetic resonances.