论文标题
新型杂化anapole状态的理论,观察和超快响应
Theory, observation and ultrafast response of novel hybrid anapole states
论文作者
论文摘要
现代的纳米光子学目睹了“电静脉”的兴起,电偶极子和环形电偶极子的破坏性干扰,积极利用以取消纳米甲释放器的电偶极辐射。然而,麦克斯韦方程的固有二元性表明,“磁奈马尔”的可能性很有趣,涉及磁性偶极子的非放射成分和磁环偶极子。我们在这里预测,通过一系列暗场光谱测量混合电和磁性特征的杂化anapole进行实验观察,所有显性多物都被纳米辅导员抑制。我们深入研究了固定和瞬态方案中这种外来电流构型的物理,并预测了混合葡萄糖崩溃后的子PS时间内发生的许多超快现象。基于前面的理论,我们设计了一个非想要的跨表面,具有双重功能:固定态度中的完美透明度和瞬态中可控的超短脉冲击败。
Modern nanophotonics has witnessed the rise of "electric anapoles", destructive interferences of electric dipoles and toroidal electric dipoles, actively exploited to cancel electric dipole radiation from nanoresonators. However, the inherent duality of Maxwell's equations suggests the intriguing possibility of "magnetic anapoles", involving a nonradiating composition of a magnetic dipole and a magnetic toroidal dipole. Here, we predict, fabricate and observe experimentally via a series of dark field spectroscopy measurements a hybrid anapole of mixed electric and magnetic character, with all the dominant multipoles being suppressed by the toroidal terms in a nanocylinder. We delve into the physics of such exotic current configurations in the stationary and transient regimes and predict a number of ultrafast phenomena taking place within sub-ps times after the breakdown of the hybrid anapole. Based on the preceding theory, we design a non-Huygens metasurface featuring a dual functionality: perfect transparency in the stationary regime and controllable ultrashort pulse beatings in the transient.