论文标题
偏振式连贯的完美吸收,基于在连续体和激子中准结合状态之间的强临界耦合
Polaritonic coherent perfect absorption based on strong critical coupling between quasi-bound state in the continuum and exciton
论文作者
论文摘要
对于许多纳米型设备而言,增强光 - 物质相互作用至关重要,而实现它的一种方法是将能量完美地馈送到强耦合系统中。在这里,我们提出了基于散装WS2的间隙扰动的二聚光栅,以灵活控制连续体(Quasi-BIC)和激子中准结合状态之间的强耦合。仿真结果表明,当将间隙扰动引入系统中,导致Brillouin区域折叠时,BIC转换为准BIC,其质量因子(Q-Factor)与间隙扰动的值有关。强耦合导致吸收光谱的抗横断性行为,因此获得了0.235 eV的RABI分裂能。时间耦合模式理论用于分析强耦合系统,并且可以通过调节准BIC的阻尼速率来使系统满足强大的临界耦合条件,从而增强系统的吸收。此外,通过使用两端口源激发,可以实现极性相干的完美吸收。这项工作可以为增强光线相互作用以及基于极化的发光或激光设备的前景提供想法。
Enhancement of light-matter interactions is of great importance for many nanophotonic devices, and one way to achieve it is to feed energy perfectly to the strongly coupled system. Here, we propose gap-perturbed dimerized gratings based on bulk WS2 for flexible control of the strong coupling between quasi-bound state in the continuum (quasi-BIC) and exciton. The simulation results show that when a gap perturbation is introduced into the system resulting in the Brillouin zone folding, BIC transforms into quasi-BIC whose quality factor (Q-factor) is related to the value of gap perturbation. The strong coupling results in the anti-crossover behavior of the absorption spectra, and thus a Rabi splitting energy of 0.235 eV is obtained. Temporal coupled-mode theory is employed to analyze the strong coupling system, and the absorption of the system could be enhanced, by modulating the damping rate of quasi-BIC to make the system satisfy the strong critical coupling condition. Furthermore, polaritonic coherent perfect absorption is achieved by using the two-port source excitation. This work could provide ideas for enhancing light-matter interactions and a promising prospect for polariton-based light-emitting or lasing devices.