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无序结构中多色光的共振优化

Resonance optimization of polychromatic light in disordered structures.

作者信息

Yin Hongwei, Gbadebo Adenowo, Turitsyna Elena G, Turitsyn Sergei K

机构信息

College of Physics and Microelectronic Science, Hunan University, Changsha, 410082, China.

Aston Institute of Photonic Technologies, Aston University, Aston Triangle, Birmingham, B4 7 ET, UK.

出版信息

Sci Rep. 2017 Aug 14;7(1):8042. doi: 10.1038/s41598-017-08635-1.

Abstract

Disorder offers rich possibilities for manipulating the phase and intensity of light and designing photonic devices for various applications including random lasers, light storage, and speckle-free imaging. Disorder-based optical systems can be implemented in one-dimensional structures based on random or pseudo-random alternating layers with different refractive indices. Such structures can be treated as sequences of scatterers, in which spatial light localization is characterized by random sets of spectral transmission resonances, each accompanied by a relatively high-intensity concentration. The control and manipulation of resonances is the key element in designing disorder-based photonic systems. In this work, we introduce a method of controlling disorder-induced resonances by using the established non-trivial interconnection between the symmetry of bi-directional light propagation properties and the features of the resonant transmissions. Considering a fiber with resonant Bragg gratings as an example, the mechanism of enhancing or suppressing the resonant transmission of polychromatic light and the effectiveness of the method have been demonstrated both theoretically and experimentally. The proposed algorithm of controlling disorder-induced resonances is general and applicable to classical waves and quantum particles, for disordered systems both with and without gain.

摘要

无序为操控光的相位和强度以及设计用于各种应用(包括随机激光器、光存储和无散斑成像)的光子器件提供了丰富的可能性。基于无序的光学系统可以在基于具有不同折射率的随机或伪随机交替层的一维结构中实现。这样的结构可以被视为散射体序列,其中空间光局域化由光谱传输共振的随机集合表征,每个共振都伴随着相对高强度的集中。共振的控制和操纵是设计基于无序的光子系统的关键要素。在这项工作中,我们通过利用双向光传播特性的对称性与共振传输特征之间已建立的非平凡互连,引入了一种控制无序诱导共振的方法。以具有共振布拉格光栅的光纤为例,从理论和实验上都证明了增强或抑制多色光共振传输的机制以及该方法的有效性。所提出的控制无序诱导共振的算法是通用的,适用于经典波和量子粒子,适用于有增益和无增益的无序系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4793/5556040/327cbf9544a5/41598_2017_8635_Fig1_HTML.jpg

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