论文标题

超短式引导激子 - 果龙脉冲的非线性自我行动,介电板耦合到2D半导体

Nonlinear self-action of ultrashort guided exciton-polariton pulses in dielectric slab coupled to 2D semiconductor

论文作者

Benimetskiy, F. A., Yulin, A., Mikhin, A. O., Kravtsov, V., Iorsh, I., Skolnick, M. S., Shelykh, I. A., Krizhanovskii, D. N., Samusev, A.

论文摘要

最近报道了过渡金属二甲化物(TMD)单层的激子 - 果态非线性值,这些单层与光学共振结构相连,在强烈的轻度耦合方面接近了基于GAAS的系统的值。与后者相反,基于TMD的极化设备在环境条件下仍在运行,因此具有更大的实用纳米光应用潜力。在这里,我们介绍了TA $ _2 $ o $ o $ _5 $ slab WaveGuide与WSE $ _2 $单层的非线性属性的研究。我们首先确认波导光子模式与2D半导体激子共振之间的杂交导致形成激元 - 果龙,而Rabi分裂为36 MeV。通过测量通过此基于TMD的极化波导的超短光脉冲的传播,我们首次证明了输出频谱对输入脉冲能的强非线性依赖性。我们的理论模型与实验提供了半定量的一致性,并洞悉了决定非线性脉冲自我行动的主要显微镜过程:库仑粒子间相互作用和散射到不一致的激子储层。我们还确认,在中间泵的能量下,系统支持脉冲传播的准平台孤子状态。我们的结果对于基于2D半导体的非线性片上极化设备的开发至关重要。

Recently reported large values of exciton-polariton nonlinearity of transition metal dichalcogenide (TMD) monolayers coupled to optically resonant structures approach the values characteristic for GaAs-based systems in the regime of strong light-matter coupling. Contrary to the latter, TMD-based polaritonic devices remain operational at ambient conditions and therefore have greater potential for practical nanophotonic applications. Here we present the study of the nonlinear properties of Ta$_2$O$_5$ slab waveguide coupled to a WSe$_2$ monolayer. We first confirm that the hybridization between waveguide photon mode and a 2D semiconductor exciton resonance gives rise to the formation of exciton-polaritons with Rabi splitting of 36 meV. By measuring transmission of ultrashort optical pulses through this TMD-based polaritonic waveguide, we demonstrate for the first time the strong nonlinear dependence of the output spectrum on the input pulse energy. Our theoretical model provides semi-quantitative agreement with experiment and gives insights into the dominating microscopic processes which determine the nonlinear pulse self-action: Coulomb inter-particle interaction and scattering to incoherent excitonic reservoir. We also confirm that at intermediate pump energies the system supports quasi-stationary solitonic regime of pulse propagation. Our results are essential for the development of nonlinear on-chip polaritonic devices based of 2D semiconductors.

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