论文标题

量化拓扑慢光的鲁棒性

Quantifying the robustness of topological slow light

论文作者

Arregui, Guillermo, Gomis-Bresco, Jordi, Sotomayor-Torres, Clivia Marfa, García, Pedro David

论文摘要

低维纳米结构材料可以引导光速度VG的光传播。但是,这种缓慢的光对纳米结构的临界维度的不良缺陷显着敏感。反向散射的平均自由路径XI,沿波导的平均弹道传播长度,量化了慢光与这种类型的结构障碍的稳健性。这个功绩数字决定了可接受的缓慢传播受到最小散射损失影响的可接受的缓慢传播与XI超过波导长度L时的反向散射引起的破坏性干扰之间的交叉。在这里,我们计算出对特定和确定的固定值的拓扑数量的拓扑量的拓扑光子指导的拓扑量的反向散射的自由路径。达到真空中的光速。在量化纳米级的拓扑和常规(非流动)慢轻型运输的鲁棒性时,应考虑这两个功绩XI和NG的数字。否则,任何关于拓扑指导光对传统的指导性效果更好的主张都是没有道理的。

Low-dimensional nanostructured materials can guide light propagating with very low group velocity vg. However, this slow light is significantly sensitive to unwanted imperfections in the critical dimensions of the nanostructure. The backscattering mean free path, xi, the average ballistic propagation length along the waveguide, quantifies the robustness of slow light against this type of structural disorder. This figure of merit determines the crossover between acceptable slow-light transmission affected by minimal scattering losses and a strong backscattering-induced destructive interference when xi exceeds the waveguide length L. Here, we calculate the backscattering mean free path for a topological photonic waveguide for a specific and determined amount of disorder and, equally relevant, for a fixed value of the group index ng which is the slowdown factor of the group velocity with respect to the speed of light in vacuum. These two figures of merit, xi and ng, should be taken into account when quantifying the robustness of topological and conventional (non-topological) slow-light transport at the nanoscale. Otherwise, any claim on a better performance of topological guided light over conventional one is not justified.

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