论文标题

从连续体的界面状态下,单层WS2强烈增强的光耦合

Strongly enhanced light-matter coupling of a monolayer WS2 from a bound state in the continuum

论文作者

Maggiolini, E., Polimeno, L., Todisco, F., Di Renzo, A., De Giorgi, M., Ardizzone, V., Mastria, R., Cannavale, A., Pugliese, M., Maiorano, V., Gigli, G., Gerace, D., Sanvitto, D., Ballarini, D.

论文摘要

连续体(BIC)中的光学结合状态允许完全防止光子模式沿给定的空间方向辐射到自由空间。偏振子激发源自BIC与激子共振的强烈辐射 - 物质相互作用,继承了超大的辐射寿命和由于其杂种性质而引起的显着非线性。然而,最大化这些结构中的光 - 物质相互作用仍然具有挑战性,尤其是在2D半导体中,从而阻止了观察到BIC极化子的室温非线性。在这里,我们通过将单层WS2激素耦合到BIC,在室温下显示出强烈的轻度相互作用,同时通过Bloch表面波限制优化单层位置的电场强度。通过在光栅几何形状上作用,将与活性材料的耦合最大化,以开放且柔性的结构最大化,从而可以在局部能量最小值和创纪录的70 MeV Rabi拆卸的情况下实现100 MeV光子带隙。我们的新型架构提供了较大的室温光学非线性,从而为基于BIC的北极星设备铺平了道路,具有拓扑性保护的鲁棒性。

Optical bound states in the continuum (BIC) allow to totally prevent a photonic mode from radiating into free space along a given spatial direction. Polariton excitations derived from the strong radiation-matter interaction of a BIC with an excitonic resonance inherit an ultralong radiative lifetime and significant nonlinearities due to their hybrid nature. However, maximizing the light-matter interaction in these structures remains challenging, especially with 2D semiconductors, thus preventing the observation of room temperature nonlinearities of BIC polaritons. Here we show a strong light-matter interaction enhancement at room temperature by coupling monolayer WS2 excitons to a BIC, while optimizing for the electric field strength at the monolayer position through Bloch surface wave confinement. By acting on the grating geometry, the coupling with the active material is maximized in an open and flexible architecture, allowing to achieve a 100 meV photonic bandgap with the BIC in a local energy minimum and a record 70 meV Rabi splitting. Our novel architecture provides large room temperature optical nonlinearities, thus paving the way to tunable BIC-based polariton devices with topologically-protected robustness to fabrication imperfections.

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