论文标题
使用非扰动光耦合的真实空间纳米光场操作的观点
Perspective on real-space nanophotonic field manipulation using non-perturbative light-matter coupling
论文作者
论文摘要
在纳米工程光子结构中实现大量耦合的大值可以导致多个光子共振,从而导致相同杂交偏振模式的最终性质。我们开发了一种一般理论,描述了降低维度的系统中多模式光 - 耦合,并探索了它们的新现象学,从而验证了我们理论对数值电磁模拟的预测。一方面,我们表征了与极化子的多模式性质相关的光谱特征。另一方面,我们展示了不同光子共振之间的干扰如何改变与每种极化模式相关的电磁场的真实空间形状。我们认为,工程纳米光谐振器以最大化多模式混合并通过应用的外部磁场更改北极星模式的可能性,可以允许对亚波长电磁场的动态实际空间调整。
The achievement of large values of the light-matter coupling in nanoengineered photonic structures can lead to multiple photonic resonances contributing to the final properties of the same hybrid polariton mode. We develop a general theory describing multi-mode light-matter coupling in systems of reduced dimensionality and we explore their novel phenomenology, validating the predictions of our theory against numerical electromagnetic simulations. On the one hand, we characterise the spectral features linked with the multi-mode nature of the polaritons. On the other hand, we show how the interference between different photonic resonances can modify the real-space shape of the electromagnetic field associated with each polariton mode. We argue that the possibility of engineering nanophotonic resonators to maximise the multi-mode mixing, and to alter the polariton modes via applied external fields, could allow for the dynamical real-space tailoring of subwavelength electromagnetic fields.