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Low loss waveguiding and slow light modes in coupled subwavelength silicon Mie resonators

机译:低损耗波导和慢光模式耦合的亚波长硅米氏谐振器

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摘要

Subwavelength light-guiding optical devices have gained great attention in the photonics community because they provide unique opportunities for miniaturization and functionality of the optical interconnect technology. On the other hand, high-refractive-index dielectric nanoparticles working at their fundamental Mie resonances have recently opened new venues to enhance and control light-matter interactions at the nanoscale while being free from Ohmic losses. Combining the best of both worlds, here we experimentally demonstrate low-loss slow light waveguiding in a chain of coupled silicon Mie resonators at telecommunication wavelengths. This resonant coupling forms waveguide modes with propagation losses comparable to, or even lower than those in a stripe waveguide of the same cross section. Moreover, the nanoparticle waveguide also exhibits slow light behaviour, with group velocities down to 0.03 of the speed of light. These unique properties of coupled silicon Mie resonator waveguides, together with hybrid coupler designs reducing the coupling loss from a bus waveguide, as also shown in this work, may open a path towards their potential applications in integrated photonics for light control in optical and quantum communications or biosensing, to mention some.
机译:亚波长light-guiding光学设备在光子学社区获得极大关注因为他们提供了独特的机会小型化的光学和功能互连技术。high-refractive-index电介质纳米颗粒在他们的工作基本三重共振最近打开的新场馆增强和控制件轻松事相互作用在纳米尺度上自由从欧姆损失。两个世界,我们实验展示低损耗慢光波导耦合链硅米氏谐振器通信波长。耦合波导模式与传播形式损失相当,甚至比低相同的条纹波导横截面。此外,纳米波导展品慢光的行为,群体光速的速度降至0.03。这些独特的硅三重耦合的性质谐振器波导,混合在一起耦合器设计减少的耦合损耗总线波导,也显示在这工作打开一个朝着他们的潜在的应用在光控制集成光子学光学和量子通信或若,提到一些。

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