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Design, synthesis and characterization of new bimechanistic optical power limiters based on reverse saturable and two-photon absorption

机译:基于反向可饱和和双光子吸收的新型生物机械光功率限制器的设计,合成与表征

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During the past five years there has been considerable progress in the desing of organic materials for optical power limiting (OPL) applications. One ofthe more promising and widely studied mateirals approaches involves reverse saturable absorption (RSA) from various excited states. We have recently been examining the efficacy of utilizing highly absorbing photogenerated charge states for RSA. Both polaronic radical cations and bipolaronic dications are possible candidates for this mode of optical limiting. Equally intriguing are new approaches to designing chromophores with large two-photon asorption (TPA) cross-sections. For some pulse durations the effective two-photon cross-section for bis-(diphenylamino)diphenylpolyenes, and dendrimers based on these repeat units, are extraordinaryly large, indicative of excited state absorption. In this presentation we will discuss the possibility of combining these two optical limiting mechanistic paradigms in single structures, which may then be considered as bimechanistic optical power limiters.
机译:在过去五年中,在光学电源限制(OPL)应用的有机材料中存在相当大的进展。更有前途和广泛研究的配对方法之一涉及来自各种激发态的反向可饱和的吸收(RSA)。我们最近一直在检查利用高吸收的光生电电荷状态进行RSA的功效。对于这种光学限制模式,极性自由基阳离子和双极性脱位是可能的候选者。同样有趣的是设计具有大的两光子吸气(TPA)横截面的发色团的新方法。对于一些脉冲持续时间,基于这些重复单元的双 - (二苯基氨基)二苯基聚解的有效的双光子横截面,以及基于这些重复单元的树枝状体,是非常大的,指示激发态的吸收。在本文中,我们将讨论将这两个光学限制机械范例组合在单个结构中的可能性,然后可以被认为是Bimen1机械的光学功率限制器。

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