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Optical nonlinearity and power limiting in organic molecules and nanocomposites

机译:有机分子和纳米复合材料的光学非线性和功率限制

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Nonlinear optical transmission in materials has several applications including laser mode-locking, pulse shaping, optical Instability, optical switching, and optical power limiting. Organic molecules suitable for runctionalization have been extensively investigated for their third order nonlinearities. We have measured the optical nonlinearity of different novel organic and composite systems including nanocomposite polymer films of Au, Ag and Pt, Organic ionic crystals (pyridinium and quinolinium salts), Au-alkanethiol clusters, thiophene based polymers, and Schiff base complexes, using the z-scan and degenerate four wave mixing techniques, employing laser pulses of nanosecond and femtosecond durations respectively. Most of these materials are found to be efficient optical power limiters under our excitation conditions, and their nonlinear extinction coefficients have been calculated. Enhancement in the optical nonlinearity was sometimes obtained even by mixing of two organic media. From degenerate four wave mixing experiments, the third order nonlinear susceptibility x~(3) and figure of merit x~(3)/α values also have been determined for some of these materials. The above experiments conducted in a large number of organic and composite materials unravel the potential of these media for diverse photonic applications.
机译:材料中的非线性光学传输具有多种应用,包括激光锁模,脉冲整形,光学不稳定性,光学开关和光功率限制。适用于功能化的有机分子已经被广泛研究了其三阶非线性。我们已经测量了不同的新型有机和复合系统的光学非线性,包括金,银和铂的纳米复合聚合物薄膜,有机离子晶体(吡啶鎓和喹啉鎓盐),金-烷硫醇簇,噻吩基聚合物和席夫碱配合物, z扫描和简并四波混频技术,分别使用纳秒和飞秒持续时间的激光脉冲。在我们的激发条件下,发现大多数这些材料是有效的光功率限制器,并且已经计算出它们的非线性消光系数。有时甚至通过混合两种有机介质也可以提高光学非线性。通过简并的四波混频实验,还确定了其中一些材料的三阶非线性磁化率x〜(3)和品质因数x〜(3)/α值。在大量有机材料和复合材料中进行的上述实验揭示了这些介质在各种光子应用中的潜力。

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