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Fluorescent Holographic Fringes with a Surface Relief Structure Based on Merocyanine Aggregation Driven by Blue-violet Laser

机译:基于蓝紫色激光驱动的基于花菁聚集的表面起伏结构的荧光全息条纹

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摘要

Stability and integration are the goals for developing photonic devices. Spirooxazines have the property of photoinduced merocyanine-aggregation in polymer matrix, which can be applied to fluorescence emission and stable information storage. Although visible light coherent radiation with UV-assist has been used to achieve polarization-modulated holographic memory in spirooxazine doped PMMA films, the complexity of optical systems is increased and the aggregation ability of merocyanine is decreased. Here, we report that fluorescent holographic gratings with a surface relief structure can be inscribed in the film via sole irradiation of 403.4 nm. Time-dependent photo-anisotropy and holographic dynamics were both investigated with different power densities of the near-UV laser. The non-exponential photokinetics was explained by the sequential formation of mono- and aggregate-merocyanine molecules. The appearance of merocyanine aggregates is found to be beneficial to the long-term holographic memory with fluorescent emission. This work provides a research strategy for the integrity of storage, display and micro-fabrication of organic functional-devices.
机译:稳定性和集成度是开发光子器件的目标。螺恶嗪具有在聚合物基质中光诱导的花菁聚集的性质,可用于荧光发射和稳定的信息存储。尽管已使用紫外线辅助的可见光相干辐射在掺有螺恶嗪的PMMA膜中实现了偏振调制全息照相存储,但光学系统的复杂性增加了,而花菁的聚集能力降低了。在这里,我们报道通过单独的403.4 nm辐照,可以在膜中刻入具有表面起伏结构的荧光全息光栅。随时间变化的光各向异性和全息动力学都在近紫外激光的不同功率密度下进行了研究。非指数光动力学由单-和聚-花青素分子的顺序形成来解释。发现花青素聚集体的出现对具有荧光发射的长期全息记忆是有益的。这项工作为有机功能设备的存储,显示和微制造的完整性提供了研究策略。

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