首页> 外文会议>Conference on organic photonic materials and devices XI; 20090127-29; San Jose, CA(US) >Enhancing the two-photon excited fluorescence by two-dimensional nonlinear optical-polymer photonic crystals
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Enhancing the two-photon excited fluorescence by two-dimensional nonlinear optical-polymer photonic crystals

机译:通过二维非线性光学聚合物光子晶体增强双光子激发的荧光

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We have successfully demonstrated enhancement of the two-photon excited fluorescence (TPEF) in a highly nonlinear optical polymer two-dimensional (2D) photonic crystal (PhC) waveguide, arising from resonant coupling between the external laser field and a photonic band mode. Moreover, we directly determine the experimental photonic band dispersion structure of waveguiding modes under the light line in a 2D PhC waveguide by using angle-resolved attenuated total reflection spectroscopy. Resonance coupling between the external evanescent wave from total reflection within the prism and the waveguiding modes in the 2D PhC provides clear information on individual band components by resolving the angle (i.e., wave vector k) and photon energy. The experimentally determined photonic band structure is essential for understanding the novel light propagation and nonlinear optical properties of PhC systems. Good agreement was obtained between the TPEF enhancements and features of the photonic band structure, indicating that active manipulation of these nonlinear TPE processes is a realistic possibility through engineering the band dispersion and band group velocity characteristics. Future work in this direction should lead to dramatic improvements in the performance of TPE applications.
机译:我们已经成功地证明了由于外部激光场与光子带模式之间的共振耦合,在高度非线性的光学聚合物二维(2D)光子晶体(PhC)波导中双光子激发荧光(TPEF)的增强。此外,我们使用角分辨衰减全反射光谱法直接确定了二维PhC波导中光线下波导模式的实验光子带色散结构。来自棱镜内的全反射的外部e逝波与2D PhC中的波导模式之间的共振耦合通过解析角度(即波矢量k)和光子能量,为各个波段分量提供了清晰的信息。实验确定的光子能带结构对于理解PhC系统的新型光传播和非线性光学特性至关重要。 TPEF增强与光子能带结构的特征之间取得了良好的一致性,表明通过设计能带色散和能带速度特性,主动操纵这些非线性TPE过程是现实的可能性。朝这个方向的未来工作将导致TPE应用程序性能的显着提高。

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