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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Femtosecond Z-scan and degenerate four-wave mixing measurements of real and imaginary parts of the third-order nonlinearity of soluble conjugated polymers
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Femtosecond Z-scan and degenerate four-wave mixing measurements of real and imaginary parts of the third-order nonlinearity of soluble conjugated polymers

机译:飞秒Z扫描和简并四波混合测量可溶共轭聚合物三阶非线性的实部和虚部

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We investigated the third-order nonlinear optical properties of several soluble pi-conjugated polymers with a goal of reliable determination of the parameters that characterize the nonlinearity, such as the real and imaginary parts of the nonlinear refractive index n(2) and the one-photon loss and two-photon loss merit factors W and T, respectively. The measurements were performed at 800 nm with 100-fs pulses from an amplified Ti:sapphire system. We present results of investigations of several 2,5-substituted poly(p-phenylene-vinylenes), including poly[2-methoxy-5-(2'-ethyl-hexyloxy)-p-phenylenevinylene] and a soluble ladder poly (p-phenylene) polymer. In particular, Z-scan measurements of polymer solutions were found to be useful for the determination of the complex nonlinear refractive index. The results could be verified by time-dependent degenerate four-wave mixing studies performed on thin films of the polymers. We found generally good agreement between the values of n(2) determined from Z scan and those from degenerate four-wave mixing. The results indicate that the nonlinear refractive index of the order of 10(-12) cm(2)/W can be readily obtained for various conjugated polymers. However, the two-photon merit factors T larger than unity are commonly encountered within the two-photon absorption ranges of these compounds. (C) 1998 Optical Society of America. [References: 32]
机译:我们研究了几种可溶性pi共轭聚合物的三阶非线性光学性质,目的是可靠地确定表征非线性的参数,例如非线性折射率n(2)的实部和虚部,以及光子损耗和双光子损耗的优值因子分别为W和T。在放大的Ti:蓝宝石系统中以100 fs的脉冲在800 nm下进行测量。我们目前的调查结果的几个2,5取代的聚(对亚苯基亚乙烯基),包括聚[2-甲氧基-5-(2'-乙基-己氧基)-对亚苯基亚乙烯基]和可溶性梯形聚(p -亚苯基)聚合物。特别地,发现聚合物溶液的Z-扫描测量对于确定复数非线性折射率是有用的。可以通过对聚合物的薄膜进行随时间变化的简并四波混合研究来验证结果。我们发现从Z扫描确定的n(2)值与简并四波混频的n(2)值之间通常具有良好的一致性。结果表明,对于各种共轭聚合物,可以轻松获得10(-12)cm(2)/ W的非线性折射率。然而,在这些化合物的双光子吸收范围内通常会遇到大于1的双光子优点因子T。 (C)1998年美国眼镜学会。 [参考:32]

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