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Optical limiting and degenerate four-wave mixing in novel fullerenes.

机译:在新型富勒烯中进行光学限制和简并四波混合。

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摘要

Two experimental methods, optical limiting and degenerate four-wave mixing, are employed to study the nonlinear optical properties of various novel fullerenes structures. Optical limiting refers to decreased transmittance of a material with increased incident light intensity. Detailed measurements of the wavelength-dependence of fullerene optical limiters have illustrated several key features of reverse saturable absorption. Most important among these is the requirement of weak but non-negligible ground state absorption. We have shown that the optical limiting performance of C60 can be extended into the near infrared range by appropriate modifications of the structure such as higher cage fullerenes or derivatization of the basic C60 molecule. The higher cage fullerene C76 shows improved optical limiting behavior compared to C60, for wavelengths higher than 650 nm, but becomes a weak limiter in the 800 nm range. C84, even at high concentrations in α-chloronaphthalene, does not reach the good performance of C 60, but instead shows weak optical limiting in the 800 nm range.; We also demonstrate that by attaching various groups to the C60 molecule, we can extend the optical limiting performance in the near infrared regime. The C60 derivatives studied, (C60 cyclic ketone, C60 secondary amine, C60CHC6H 4CO2H, and C60C4H4(CH 3)CH2O2C(CH2)CO2H), have a similar characteristic: the attached groups cause a symmetry-breaking of the C60 sphere and, therefore, there are new allowed transitions that appear as absorption features up to 750 nm. The optical limiting measurements show that these materials, even for low input energies, have an exceptionally strong optical limiting response in the 640 to 750 nm spectral region. For wavelengths higher than 800 nm, however, they become transparent and no optical limiting is observed. Excited state absorption cross-sections obtained from analysis of the optical limiting data reveal that the C60 derivatives have a maximum triplet-triplet absorption cross-section at 700 nm, which is shifted from the 750 nm value for the C60 molecule. For the first time, optical limiting measurements are performed on five separate C 84 isomers. These intriguing results show that the optical limiting behavior is strongly dependent on the cage symmetry. It is also found that the most abundant isomer does not have the strongest optical limiting performance, but is in fact one of the weaker optical limiters of the isomers isolated so far.; The nonresonant degenerate four-wave mixing experiments performed on the endohedral metallofullerene Er2@C82, at 1064 nm, show that the third order nonlinear susceptibility value is increased by orders of magnitude relative to the empty cage fullerenes, thus, confirming the charge-transfer process from the encapsulated atoms to the fullerene cage. We obtain a value g3x yyx-w; w,w,- w=-8.65×10 -32 esu for the molecular second order hyperpolarizability, which is almost three orders of magnitude larger than the values reported in literature for an empty cage fullerene. (Abstract shortened by UMI.)
机译:两种实验方法,光学限幅和简并四波混频,被用来研究各种新型富勒烯结构的非线性光学性质。光学极限是指随着入射光强度的增加而降低的材料的透射率。富勒烯光学限幅器的波长依赖性的详细测量已说明了反向饱和吸收的几个关键特征。其中最重要的是要求弱但不可忽略的基态吸收。我们已经表明,可以通过适当修饰结构(例如,更高的笼型富勒烯或将基本的C 60 衍生化)将C 60 的光学限制性能扩展到近红外范围内。 >分子。与C 60 相比,较高笼型富勒烯C 76 显示出更好的光学限幅行为,但波长大于650 nm,但在800 nm范围内成为弱限幅。 C 84 即使在高浓度的α-氯萘中也不能达到C 60 的良好性能,而是在800 nm范围内显示出较弱的光学极限。我们还证明,通过将各种基团连接到C 60 分子上,我们可以扩展近红外条件下的光学限制性能。研究了C 60 衍生物,(C 60 环酮,C 60 仲胺,C 60 CHC 6 H 4 CO 2 H和C 60 C 4 H 4 (CH 3 )CH 2 O 2 C(CH 2 )CO 2 H),具有相似的特征:连接的基团导致C 60 球的对称破坏,因此,出现了新的允许跃迁,表现为最高达750 nm的吸收特征。光学极限测量结果表明,即使对于低输入能量,这些材料在640至750 nm光谱范围内也具有异常强大的光学极限响应。但是,对于高于800 nm的波长,它们变得透明并且没有观察到光学限制。通过分析光学极限数据获得的激发态吸收截面显示,C 60 衍生物在700 nm处具有最大的三重态-三重态三重吸收截面,从750 nm的值开始变化。 C 60 分子。首次对五个独立的C 84 异构体进行了光极限测量。这些有趣的结果表明,光学限制行为在很大程度上取决于保持架的对称性。还发现,最丰富的异构体没有最强的光学限制性能,但实际上是迄今为止分离出的异构体中较弱的光学限制剂之一。对内面金属富勒烯Er 2 @C 82 在1064 nm处进行的非共振简并四波混合实验表明,三阶非线性磁化率值增加了相对于空的笼状富勒烯,其大小确定,从而证实了从包封的原子到富勒烯笼的电荷转移过程。我们获得一个值 g 3 x yyx - w ; w ,< hsp sp =“ 0.265”> w - w =- 8.65×10 - 32 esu为分子二阶超极化率,比文献报道的空笼式富勒烯值高出近三个数量级。 (摘要由UMI缩短。)

著录项

  • 作者

    Marciu, Daniela.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Physics Optics.; Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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