Díaz-Escobar Evelyn, Barreda Ángela I, Mercadé Laura, Griol Amadeu, Pitanti Alessandro, Martínez Alejandro
Nanophotonics Technology Center, Universitat Politécnica de Valéncia, Camino de Vera s/n, 46022 Valencia, Spain.
Institute of Solid State Physics, Friedrich Schiller University Jena, Max-Wien-Platz 1, 07743 Jena, Germany.
ACS Photonics. 2023 Feb 9;10(3):707-714. doi: 10.1021/acsphotonics.2c01840. eCollection 2023 Mar 15.
Far-field scattering of high-index nanoparticles can be hugely reduced via interference of multipolar moments giving rise to the so-called anapole states. It has been suggested that this reduced scattering can contribute to efficient transmission along periodic chains of such nanoparticles. In this work, we analyze via numerical simulation and experiments the transmission of light along chains of regular and slotted silicon disks in the frequency region over the light cone. We do not observe transmission at wavelengths corresponding to the excitation of the first electric anapole for regular disks. However, large transmission along straight and curved chains is observed for slotted disks due to the simultaneous excitation of the toroidal dipole and magnetic quadrupole modes in the disks. Photonic band calculations unveil that such large transmission can be ascribed to leaky resonances, though bound states in the continuum do not appear in the structures under analysis. Experiments at telecom wavelengths using silicon disk chains confirm the numerical results for straight and bent chains. Our results provide new insights into the role of radiationless states in light guidance along nanoparticle chains and offer new avenues to utilize Mie resonances of simple nanophotonic structures for on-chip dielectric photonics.
通过多极矩干涉产生所谓的无偶极态,可以大幅降低高折射率纳米粒子的远场散射。有人提出,这种降低的散射有助于沿着此类纳米粒子的周期性链高效传输。在这项工作中,我们通过数值模拟和实验分析了光在光锥频率区域内沿着规则和开槽硅盘链的传输情况。对于规则盘,我们没有观察到在对应于第一电无偶极激发波长处的传输。然而,由于开槽盘中同时激发了环形偶极和磁四极模式,在开槽盘的直线和弯曲链上观察到了较大的传输。光子带计算表明,这种大传输可归因于泄漏共振,尽管在所分析的结构中未出现连续统中的束缚态。使用硅盘链在电信波长下进行的实验证实了直线和弯曲链的数值结果。我们的结果为无辐射态在沿着纳米粒子链的光导中的作用提供了新的见解,并为利用简单纳米光子结构的米氏共振实现片上介电光子学提供了新途径。