Walker Paul M, Whittaker Charles E, Skryabin Dmitry V, Cancellieri Emiliano, Royall Ben, Sich Maksym, Farrer Ian, Ritchie David A, Skolnick Maurice S, Krizhanovskii Dmitry N
1Department of Physics and Astronomy, University of Sheffield, Sheffield, S3 7RH UK.
2Department of Physics, University of Bath, Bath, BA2 7AY UK.
Light Sci Appl. 2019 Jan 16;8:6. doi: 10.1038/s41377-019-0120-7. eCollection 2019.
We demonstrate the generation of a spatiotemporal optical continuum in a highly nonlinear exciton-polariton waveguide using extremely low excitation powers (2-ps, 100-W peak power pulses) and a submillimeter device suitable for integrated optics applications. We observe contributions from several mechanisms over a range of powers and demonstrate that the strong light-matter coupling significantly modifies the physics involved in all of them. The experimental data are well understood in combination with theoretical modeling. The results are applicable to a wide range of systems with linear coupling between nonlinear oscillators and particularly to emerging polariton devices that incorporate materials, such as gallium nitride and transition metal dichalcogenide monolayers that exhibit large light-matter coupling at room temperature. These open the door to low-power experimental studies of spatiotemporal nonlinear optics in submillimeter waveguide devices.
我们展示了在高度非线性的激子-极化子波导中,使用极低的激发功率(2皮秒、100瓦峰值功率脉冲)以及适用于集成光学应用的亚毫米器件,产生时空光学连续体。我们观察到在一系列功率范围内多种机制的贡献,并证明强光-物质耦合显著改变了其中所有机制所涉及的物理过程。结合理论建模,实验数据得到了很好的理解。这些结果适用于非线性振荡器之间具有线性耦合的广泛系统,尤其适用于新兴的极化子器件,这些器件包含在室温下表现出强光-物质耦合的材料,如氮化镓和过渡金属二硫属化物单层。这些为亚毫米波导器件中时空非线性光学的低功率实验研究打开了大门。