Chen Junxue, Wang Pei, Ming Hai, Lakowicz Joseph R, Zhang Douguo
School of Science, Southwest University of Science and Technology, Mianyang, Sichuan 621010, People's Republic of China.
Institute of Photonics, Department of Optics and Optical Engineering, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.
Phys Rev B. 2019 Mar 15;99(11). doi: 10.1103/PhysRevB.99.115420.
In this work, the resonant coupling behaviors between the transverse-electric (TE) and transverse-magnetic (TM) Bloch surface waves (BSWs) on a dielectric multilayer have been theoretically studied. Due to the different penetration depths in the dielectric multilayer, the TM BSWs and TE BSWs can act as the radiative and dark electromagnetic modes, respectively. By using a rectangular grating on the dielectric multilayer, both Rabi splitting and Fano resonance phenomena based on the coupling of the two BSW modes were demonstrated, through tuning the period of the grating and the azimuthal angle of the incoming wave. Furthermore, by using the temporal coupled-mode theory, we show that the anti-Hermitian coupling between the two BSW modes contributes to the enhanced diffraction and the huge polarization transformation efficiency of incoming waves in the weak coupling regime.
在这项工作中,从理论上研究了介质多层膜上横电(TE)和横磁(TM)布洛赫表面波(BSW)之间的共振耦合行为。由于在介质多层膜中的穿透深度不同,TM BSW和TE BSW可分别作为辐射电磁模式和暗电磁模式。通过在介质多层膜上使用矩形光栅,基于两种BSW模式的耦合,通过调节光栅周期和入射波的方位角,展示了拉比分裂和法诺共振现象。此外,通过使用时间耦合模理论,我们表明,在弱耦合区域,两种BSW模式之间的非厄米耦合有助于增强入射波的衍射和巨大的偏振变换效率。