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Optical power limiting properties of two-photon absorbing fluorene and dithienothiophene-based chromophores

机译:双光子吸收芴和二噻吩基发色团的光功率限制性质

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We have synthesized efficient two-photon absorbing fluorene and dithienothiophene (DTT) derivatives with electron donors (D) or electron acceptors (A) which are attached symmetrically or asymmetrically at the both end of conjugated links, forming D-π-D and D-π-A structures. The two-photon absorption (TPA) cross-section values (σ) of these chromophores were evaluated by the nonlinear transmission measurements using 8 ns laser pulse, and also by the two-photon-induced fluorescence method with 80 fs pulse laser. The σ values obtained were larger by the nanosecond pulse laser than that by the femtosecond laser. This result suggests that the relative contribution of the excited state absorption becomes more manifested when longer time scale pulses are used. The strong nonlinear absorption including TPA of all these materials induced an efficient optical power limiting (OPL) activity. The trend in OPL behavior agreed well with the size of the TPA intensity.
机译:我们已经合成了有效的双光子吸收芴和二噻吩(DTT)衍生物,其具有电子供体(D)或电子受体(A),其在共轭连杆的两端对称或不对称地连接,形成D-π-D和D- π-一个结构。通过使用8NS激光脉冲的非线性透射测量,以及具有80 fs脉冲激光的双光子诱导的荧光方法,评估这些发色团的双光子吸收(TPA)横截面值(σ)。由纳秒脉冲激光器的σ值比Femtosecond激光器更大。该结果表明,当使用较长时间刻度脉冲时,激发状态吸收的相对贡献变得更加表现。包括所有这些材料的TPA的强的非线性吸收诱导有效的光学功率限制(OPL)活性。 OPL行为的趋势与TPA强度的大小相加得很好。

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