Pura Jose Luis, Castillo López de Larrinzar Beatriz, Liang Minpeng, García-Martín Antonio, Gómez Rivas Jaime, Sánchez-Gil José A
Instituto de Estructura de la Materia (IEM), Consejo Superior de Investigaciones Científicas, Serrano 121, 28006 Madrid, Spain.
GdS-Optronlab, Física de la Materia Condensada, Universidad de Valladolid, Paseo de Belén 19, 47011 Valladolid, Spain.
ACS Photonics. 2024 Sep 3;11(10):4090-4100. doi: 10.1021/acsphotonics.4c00938. eCollection 2024 Oct 16.
Bound states in the continuum (BICs) in all-dielectric metasurfaces enhance light-matter interaction at the nanoscale due to their infinite factors and strong field confinement. Among a variety of phenomena already reported, their impact on chiral light has recently attracted great interest. Here we investigate the emergence of intrinsic and extrinsic optical chirality associated with the excitation of BICs in various metasurfaces made of Si nanorod dimers on a quartz substrate, comparing three cases: parallel nanorods (neutral) and shifted and slanted dimers, with/without index-matching superstrate. We analyze both the circular dichroism (CD) of the far-field (FF) interaction and the helicity of the near-field (NF) distribution. We show that the best approach to achieve chiral response in the FF based on extrinsic chirality is to exploit quasi-BICs (q-BICs) appearing in the case of slanted nanorod dimers. By contrast, the helicity density is largely enhanced in the case of shifted dimers, as it presents intrinsic chirality, with values 2 orders of magnitude larger than those of circularly polarized plane waves. These so-called superchiral electromagnetic fields concentrated at the nanoscale within the metasurface hold promise of appealing implications in phenomena such as strong-coupling, photoluminescence emission, or other local light-matter interactions.
全介质超表面中的连续域束缚态(BICs)由于其无限品质因数和强场限制,增强了纳米尺度下的光与物质相互作用。在已报道的各种现象中,它们对手性光的影响最近引起了极大关注。在这里,我们研究了与石英衬底上由硅纳米棒二聚体构成的各种超表面中BICs激发相关的本征和非本征光学手性的出现,比较了三种情况:平行纳米棒(中性)以及有/无折射率匹配覆盖层的位移和倾斜二聚体。我们分析了远场(FF)相互作用的圆二色性(CD)和近场(NF)分布的螺旋度。我们表明,基于非本征手性在远场中实现手性响应的最佳方法是利用倾斜纳米棒二聚体情况下出现的准BICs(q - BICs)。相比之下,位移二聚体的情况下螺旋度密度大大增强,因为它呈现本征手性,其值比圆偏振平面波的值大2个数量级。这些所谓的超手性电磁场在超表面内纳米尺度上集中存在,有望在诸如强耦合、光致发光发射或其他局部光与物质相互作用等现象中产生引人注目的影响。