Kartashov Yaroslav V, Skryabin Dmitry V
Department of Physics, University of Bath, BA2 7AY, Bath, United Kingdom.
ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, 08860 Castelldefels (Barcelona), Spain.
Phys Rev Lett. 2017 Dec 22;119(25):253904. doi: 10.1103/PhysRevLett.119.253904.
The functionality of many nonlinear and quantum optical devices relies on the effect of optical bistability. Using microcavity exciton-polaritons in a honeycomb arrangement of microcavity pillars, we report the resonance response and bistability of topological edge states. A balance between the pump, loss, and nonlinearity ensures a broad range of dynamical stability and controls the distribution of power between counterpropagating states on the opposite edges of the honeycomb lattice stripe. Tuning energy and polarization of the pump photons, while keeping their momentum constant, we demonstrate control of the propagation direction of the dominant edge state. Our results facilitate the development of practical applications of topological photonics.
许多非线性和量子光学器件的功能依赖于光学双稳性效应。利用微腔柱体蜂窝状排列中的微腔激子-极化激元,我们报道了拓扑边缘态的共振响应和双稳性。泵浦、损耗和非线性之间的平衡确保了广泛的动力学稳定性,并控制了蜂窝晶格条纹相对边缘上反向传播态之间的功率分布。在保持泵浦光子动量不变的同时调节其能量和偏振,我们展示了对主导边缘态传播方向的控制。我们的结果促进了拓扑光子学实际应用的发展。