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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Steady-state and dynamical Anderson localization of counterpropagating beams in two-dimensional photonic lattices
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Steady-state and dynamical Anderson localization of counterpropagating beams in two-dimensional photonic lattices

机译:二维光子晶格中反向传播光束的稳态和动态Anderson局域化

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We demonstrate Anderson localization of mutually incoherent counterpropagating beams in an optically induced two-dimensional photonic lattice. The effect is displayed in a system of two broad probe beams propagating head-on through a fixed disordered photonic lattice recorded in a photorefractive crystal. In addition to the steady-state localization, we also observe the dynamical localization; that is, the localization of time-changing beams. As compared to the localization of single beams, in which there exist no dynamical effects, the localization of counterpropagating beams is more pronounced and prone to instabilities.
机译:我们证明了在光学诱导的二维光子晶格中相互不相干的反向传播光束的安德森局部化。该效果在两个广角探测光束的系统中显示,该光束通过记录在光折射晶体中的固定的无序光子晶格正面传播。除了稳态本地化,我们还观察了动态本地化;即,时变光束的定位。与没有动力作用的单光束定位相比,反向传播光束的定位更加明显,并且不稳定。

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