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Nonlinear optical effects in organic microstructures

机译:有机微结构中的非线性光学效应

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Organic microstructures attract much attention due to their unique properties originating from the design of their shape and optical parameters. In this work we discuss the linear, second- and third-order nonlinear optical effects in arrays and in individual organic microstructures composed by self-assembling technique and formed randomly on top of a solid substrate. The structures under study consist of micro-spheres, -hemispheres or -frustums made of red laser dye and reveal an intense fluorescence (FL) in the visible spectral range. Importantly, that due to a high value of the refractive index and confined geometry, such micro-structures support the excitation of whispering gallery modes (WGM), which brings about strong and spectrally-selected light localization. We show that an amplification of the nonlinear optical effects is observed for these structures as compared to a homogeneous dye film of similar composition. The obtained data are in agreement with the results of the FDTD calculations performed for the structures of different dimensions. Perspectives of application of such type of organic nonlinear microresonators in optical devices are discussed.
机译:有机微结构由于其形状和光学参数的设计而具有独特的性能,因此备受关注。在这项工作中,我们讨论了由自组装技术组成并随机形成在固体衬底顶部的阵列和单个有机微结构中的线性,二阶和三阶非线性光学效应。所研究的结构由红色激光染料制成的微球,半球或平截头体组成,并在可见光谱范围内显示出强烈的荧光(FL)。重要的是,由于高折射率和有限的几何形状,这种微结构支持耳语画廊模式(WGM)的激发,从而产生强的和光谱选择的光定位。我们表明,与相似组成的均质染料膜相比,这些结构的非线性光学效应得到了放大。所获得的数据与针对不同尺寸结构进行的FDTD计算结果一致。讨论了这种类型的有机非线性微谐振器在光学器件中的应用前景。

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