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机构地区:[1]中国科学院长春光学精密机械与物理研究所激发态物理重点实验室,吉林长春130022
出 处:《发光学报》2003年第2期199-202,共4页Chinese Journal of Luminescence
基 金:国家自然科学基金资助项目(10174078)
摘 要:分子聚集体在非线性光学和集成光学等领域有潜在的应用前景。纳米结构一维染料分子J 聚集体有许多既不同于单个分子又不同于体材料的奇异性质,即超辐射和巨光学非线性。这种超辐射是由于在几个本征态内振子强度结合在一起,得到一巨跃迁偶极子,因而是超辐射的。跃迁速率与耦合分子个数N成正比。分子聚集体的J 吸收和超辐射发射是共振的。利用Z 扫描技术测量PIC在不同配比下的非线性折射率、非线性吸收系数和非线性极化率。观测到随着链长变短,样品的三阶非线性极化率增大。对这种非线性增强的机制进行了分析和讨论。Molecular aggregates have the potential applications on nonlinear opti cs and integrated optics. Unique properties of one dimension nanostructure d ye m olecular Jaggregates are different from either monomers or bulk materials. The unique optical properties of molecular aggregates, not observed in crystals are superradiant emission and giant optical nonlinearities. Superradiance is cause d by the fact that the oscillator strengths of the coupled molecules are swe pt t ogether in a few eigenstates, which thus obtain a giant transition dipole to the ground state and are therefore superadiant: their radiative decay rate enhanc ed linearly with the number of coupled molecules N. Absorption of aggr egates and superradiance are resonant in the spectra. The nonlinear refractive index, absorption coefficiency and polarizibility were measured with Zscan.It is ob served that three order nonlinear polarizibility was increased with chain l engths shortening and the mechani sm was analyzed and discussed.
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