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首页> 外文期刊>Optics & Laser Technology >Zinc Phthalocyanine-Poly (Vinyl Alcohol) nanocomposite films: Low threshold optical limiting properties based on third-order nonlinear absorption response
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Zinc Phthalocyanine-Poly (Vinyl Alcohol) nanocomposite films: Low threshold optical limiting properties based on third-order nonlinear absorption response

机译:锌酞菁 - 聚(乙烯醇)纳米复合膜:基于三阶非线性吸收响应的低阈值光学限制性

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摘要

In this article, we discuss on an in-depth study of the structure and morphology as well as optical (linear/nonlinear) properties of Zinc Phthalocyanine (ZnPc) - Poly (Vinyl Alcohol) (PVA) nanocomposite films. An investigation into the third-order nonlinear absorption properties of the nanocomposite films of ZnPc-PVA system, on excitation with low power continuous wave (CW) laser light at 632.8 nm, for different concentrations of the ZnPc content and at different input intensities, is presented. In these nanocomposites, a transition from Saturable Absorption (SA) to Reverse Saturable Absorption (RSA) was observed, on either increasing fluence or ZnPc content. The estimated values of the effective coefficients of nonlinear absorption (beta) and imaginary thirdorder nonlinear susceptibility (Im chi((3))) are better than those reported ones. Furthermore, the optical limiting action of these samples is demonstrated. The results suggest that the nanoclustered organic chromophores are dispersed uniformly in the voids/free volumes available between the PVA chains. Standing on these points, it may be noted that the newly fabricated ZnPc-PVA nanocomposite films, which possess excellent surface homogeneity, high laser damage threshold, improved thermal and photostability, and prolonged lifespan (five years or more!), represent an efficient low threshold NLO material with significant potential applications in optoelectronic and photonic devices.
机译:在本文中,我们讨论了结构和形态的深入研究以及锌酞菁(ZnPC) - 聚(乙烯醇)(PVA)纳米复合膜的光学(线性/非线性)性能。对ZnPC-PVA系统纳米复合材料薄膜的三阶非线性吸收性能的研究,在632.8nm处的低功率连续波(CW)激光激发中,用于不同浓度的ZnPC含量和不同输入强度,是提出了。在这些纳米复合材料中,观察到从可饱和吸收(SA)反向可饱和吸收(RSA)的过渡,以增加流量或ZnPC含量。非线性吸收(β)和虚拟三阶非线性敏感性的有效系数的估计值(IM Chi((3)))优于报告的那些。此外,对这些样品的光学限制作用进行了说明。结果表明,纳米群有机发色团均匀地分散在PVA链之间可用的空隙/游离体积中。可以注意到这些点,可以注意到新制造的ZnPC-PVA纳米复合膜,其具有优异的表面均匀性,高激光损伤阈值,改善的热和光稳定性,以及延长的寿命(五年或更长时间!),代表效率阈值NLO材料具有具有显着潜在应用的光电和光子器件。

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