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Two-photon absorption induced nonlinear absorption in fluorene oligomers

机译:二光子吸收诱导芴低聚物中的非线性吸收

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We report here the nonlinear absorption and optical power limiting properties of polyfluorenes induced by two-photon absorption (TPA). Measurements were performed in chloroform between 450 and 650 nm for nanosecond time duration pulses. The nonlinear absorption is attributed to a three-photon absorption process involving a first TPA step followed by an excited state absorption (ESA) process. The TPA cross-sections of small oligomers increases with the square of their lengths. This trend is rationalized in terms of excitonic coupling between monomers within the range of the effective length of the oligomer. The corresponding three-photon absorption coefficient α_3, presents at resonance high values for the longest oligomers (α_3 10000 cm~3/GW~2 for N = 60 at a concentration of 200 g/L), leading to efficient optical power limiting in the whole visible range (the maximum transmitted energy is lower than 10 ,μJ for an input energy of up to 350 μJ in a F/5 optical geometry).
机译:我们在此报告由双光子吸收(TPA)诱导的多氟醚的非线性吸收和光学功率限制性。在450至650nm之间的氯仿中进行测量,用于纳秒持续时间脉冲。非线性吸收归因于涉及第一个TPA步骤的三光子吸收过程,然后是激发的状态吸收(ESA)方法。小低聚物的TPA横截面随着它们的长度的平方增加。这种趋势在寡聚体的有效长度范围内的单体之间的激动偶联方面是合理化的。相应的三光子吸收系数α_3,在最长的低聚物(α_3 10000cm〜3 / gw〜2的浓度为200g / l)的共振高值下呈现,导致有效的光学功率限制在整个可见范围内(最大透射能量低于10,μJ,在F / 5光学几何形状中为高达350μJ的输入能量)。

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