论文标题
MOS2双层中偶极激子和偏振子的非线性相互作用
Nonlinear interactions of dipolar excitons and polaritons in MoS2 bilayers
论文作者
论文摘要
强烈耦合到光的激子之间的非线性相互作用是访问Polariton系统中量子多体现象的关键。由于许多可控的激发自由度,原子上薄的二维半导体为强烈耦合提供了一个有吸引力的平台。其中,最近出现的激子杂交为未开发的激子物种打开了访问,并有望增强相互作用。在这里,我们在双层MOS2中采用杂交层间激子(HIX),以实现高度非线性的激子和极性效应。这种层间激子具有平面外电偶极子以及异常较大的振荡器强度,可以在光学微腔内观察双层偏振子(双层)。与MOS2单层中的激子和极化子相比,HIX和Dipolaritons均表现出大约8倍的非线性,当Hix和InterAlayer Excitons共享同一价带时,这会进一步增强。这引起了高度非线性的制度,我们通过引入一个洞拥挤的概念来描述理论上。对多体相互作用的洞察力提供了新的工具,用于访问几个二利机量子相关性。
Nonlinear interactions between excitons strongly coupled to light are key for accessing quantum many-body phenomena in polariton systems. Atomically-thin two-dimensional semiconductors provide an attractive platform for strong light-matter coupling owing to many controllable excitonic degrees of freedom. Among these, the recently emerged exciton hybridization opens access to unexplored excitonic species, with a promise of enhanced interactions. Here, we employ hybridized interlayer excitons (hIX) in bilayer MoS2 to achieve highly nonlinear excitonic and polaritonic effects. Such interlayer excitons possess an out-of-plane electric dipole as well as an unusually large oscillator strength allowing observation of dipolar polaritons(dipolaritons) in bilayers in optical microcavities. Compared to excitons and polaritons in MoS2 monolayers, both hIX and dipolaritons exhibit about 8 times higher nonlinearity, which is further strongly enhanced when hIX and intralayer excitons, sharing the same valence band, are excited simultaneously. This gives rise to a highly nonlinear regime which we describe theoretically by introducing a concept of hole crowding. The presented insight into many-body interactions provides new tools for accessing few-polariton quantum correlations.