论文标题
激子激子在过渡金属二分裂基质中的签名
Signatures of dark excitons in exciton-polariton optics of transition metal dichalcogenides
论文作者
论文摘要
将2D材料整合到高质量的光学微腔内为迷人的多粒子现象开辟了大门,包括兴奋子孔的形成。这些是构成光子和激子的遗传特性的杂化准粒子。在这项工作中,我们调查了黑暗激子对HBN已包裹的WSE WSE $ _2 $和MOSE $ _2 $单层在强偶联体系中的动量吸收光谱的影响。特别是,由于有效的声子介导的极性子散射到了较低的深色激子状态下,WSE $ _2 $中的下极化分支的吸收远高于Mose $ _2 $。它显示了动量分辨的独特阶梯状增加,表明特定散射通道的打开。我们研究了不同的外部可及数量(例如温度或镜像反射率)如何改变极化子的光学响应。我们的研究有助于改善对激子 - 两极的显微镜理解及其与声子的相互作用,这可能暗示了可以通过动量分辨的北极星吸收来确定深色激子状态的能量的实验。
Integrating 2D materials into high-quality optical microcavities opens the door to fascinating many-particle phenomena including the formation of exciton-polaritons. These are hybrid quasi-particles inheriting properties of both the constituent photons and excitons. In this work, we investigate the so-far overlooked impact of dark excitons on the momentum-resolved absorption spectra of hBN-encapsulated WSe$_2$ and MoSe$_2$ monolayers in the strong-coupling regime. In particular, thanks to the efficient phonon-mediated scattering of polaritons into energetically lower dark exciton states, the absorption of the lower polariton branch in WSe$_2$ is much higher than in MoSe$_2$. It shows unique step-like increases in the momentum-resolved profile indicating opening of specific scattering channels. We study how different externally accessible quantities, such as temperature or mirror reflectance, change the optical response of polaritons. Our study contributes to an improved microscopic understanding of exciton-polaritons and their interaction with phonons, potentially suggesting experiments that could determine the energy of dark exciton states via momentum-resolved polariton absorption.