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Propagation of exciton-polaritons in monolayer semiconductor coupled to at-Γ bound state in the continuum

机译:激子 - 极性官在连续体中耦合到γ结合状态的单层半导体中的繁殖

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Optical bound states in the continuum (BICs) provide a way to engineer resonant response in planar photonic structures with ultimately high-quality factors. Here, we employ optical BIC in a photonic crystal slab (PCS) to realize the regime of strong coupling between light and excitons in a monolayer MoSe_2 semiconductor. We experimentally demonstrate BIC-like behavior of the lower polariton branch, with strong suppression of radiation into far-field at Γ-point of the Brillouin zone. With the decrease of the in-plane Bloch wavevector, polariton lifetime rapidly increases, while the group velocity decays. These effects balance each other granting a nearly constant polariton propagation length of less than 10 μm over a broad range of k-vectors. This result suggests the possibilities for the development of ultracompact BIC-based planar polaritonic devices for sensing, lasing, and nonlinear optics.
机译:Continuum(BICS)中的光学绑定状态为平面光子结构中的谐振响应提供了一种最终高质量因素的方法。 这里,我们在光子晶板(PCS)中采用光学BIC,以实现单层MOSE_2半导体中的光和激子之间的强耦合的强度。 我们通过实验证明了下部极谱分支的BIC样行为,具有强烈抑制了布里渊区γ点的远场。 随着飞机面内的波浪波的降低,Parariton寿命迅速增加,而群体速度衰减。 这些效果彼此平衡在宽范围的K载体上授予几乎恒定的极性传播长度小于10μm。 该结果表明,用于开发超自联BIC平面偏热装置,用于感测,激光和非线性光学器件。

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