Cao Zheng, Li Xiaojun, Tan Qinggui, Jiang Wei, Liang Dong, Dou Jinfang
Appl Opt. 2017 Apr 20;56(12):3484-3490. doi: 10.1364/AO.56.003484.
We consider four types of modulated photonic lattices and numerically study the optical Bloch oscillations of Airy beams in these periodic structures. Our results demonstrate that in transversely modulated photonic lattices, the oscillation period increases and the amplitude reduces as the separation variation index increases. However, the increasing of the width variation index could lead to a consistent reduction of oscillation period and amplitude. On the other hand, in three kinds of longitudinally bent photonic lattices, the optical Bloch oscillation trajectories of Airy beams follow the waveguide shape perfectly within the whole propagation length. For another three kinds of refractive index longitudinally varied lattices, the optical Bloch oscillation period and amplitude are limited with the increasing of refractive index, contributing to the presentation of dramatically different Airy propagation trajectories. Our study proposes a new view to manipulate the Airy trajectory in periodic structures.
我们考虑了四种类型的调制光子晶格,并对艾里光束在这些周期性结构中的光学布洛赫振荡进行了数值研究。我们的结果表明,在横向调制的光子晶格中,随着间距变化指数的增加,振荡周期增大而振幅减小。然而,宽度变化指数的增加会导致振荡周期和振幅一致减小。另一方面,在三种纵向弯曲的光子晶格中,艾里光束的光学布洛赫振荡轨迹在整个传播长度内完美地遵循波导形状。对于另外三种纵向折射率变化的晶格,随着折射率的增加,光学布洛赫振荡周期和振幅受到限制,这导致了截然不同的艾里传播轨迹的呈现。我们的研究为在周期性结构中操纵艾里轨迹提出了一种新观点。