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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Nonlinear dynamics and optical power limiting of nanoseconds pulses in naphthalocyanines and phthalocyanines with central metals gallium and indium
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Nonlinear dynamics and optical power limiting of nanoseconds pulses in naphthalocyanines and phthalocyanines with central metals gallium and indium

机译:萘酞菁和含中心金属镓和铟的酞菁中纳秒脉冲的非线性动力学和光功率限制

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摘要

The optical dynamics of octa-(4-tert-butylphenoxy) substituted naphthalocyanines and phthalocyanines with different central metals (Ga, In) were investigated for 532 nm-7 ns laser pulses. In this work, we used numerical theoretical method with two-dimensional paraxial field equation and rate equations solving by Crank-Nicholson method. A five-level model was proposed to simulate the dynamical processes and the prominent optical limiting mechanism with long pulses is the sequential (singlet-singlet) x (triplet-triplet) two-photon absorption. The theoretical results indicate that both naphthalocyanines and phthalocyanines exhibit good optical limiting performances, which is attributed mainly to the reverse saturable absorption mechanism. The naphthalocyanines with larger difference of absorption cross sections and faster rate of the intersystem crossing transition between triplet and singlet states exhibit better optical limiting behaviour. (C) 2015 Elsevier B.V. All rights reserved.
机译:在532 nm-7 ns的激光脉冲下,研究了八-(4-叔丁基苯氧基)取代的萘酞菁和具有不同中心金属(Ga,In)的酞菁的光学动力学。在这项工作中,我们使用了数值理论方法,并通过Crank-Nicholson方法求解了二维近轴场方程和速率方程。提出了一个五级模型来模拟动力学过程,长脉冲的主要光学限制机制是连续(单重-单重)x(三重-三重)双光子吸收。理论结果表明,萘酞菁和酞菁均显示出良好的光学限制性能,这主要归因于反向饱和吸收机理。在三重态和单重态之间具有较大吸收截面差异和更快的系统间相交转变速率的萘酞菁显示出更好的光学限制行为。 (C)2015 Elsevier B.V.保留所有权利。

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