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Chiral second-order nonlinear optics.

机译:手性二阶非线性光学。

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摘要

Organic second-order nonlinear optical (NLO) materials can be efficiently utilized in photonics devices for optical telecommunications and signal processing due to their high nonlinear response, processability, and low cost. Media with polar order are usually used to ensure the absence of the inversion symmetry required in second-order NLO. This study presents a method that results in creation of efficient chiral non-polar axially aligned NLO media. The stages of design and optimization include molecular engineering, quantum-mechanical theory of the molecular hyperpolarizability, chromophore characterization by means of Kleinman-disallowed hyper-Rayleigh scattering (KD-HRS), and analysis of the macroscopic alignment of the NLO chromophores in the bulk. Chiral systems belonging to non-polar symmetry groups D and D2 with high nonlinear response can be easily fabricated in a number of polymeric and liquid-crystalline materials. The NLO susceptibility χ(2) of such media are defined by the Kleinman-disallowed irreducible component of the hyperpolarizability tensor β that transforms as a traceless symmetric second-rank tensor. Using KD-HRS, one can determine the figures of merit of all irreducible components of β including the second-rank part, which is relevant in chiral non-polar media. It is shown that conjugated Λ-shaped chromophores containing one electron acceptor and two donors (or vice versa) can have large second-rank component of β. Quantum-mechanically, this can be attributed to existence of low lying electronic states of B-symmetry, that is those that change sign upon rotation around the Λ's two fold axis. A propeller-like molecule Crystal Violet is also shown to have large second-rank response and is believed to be similar in this sense to a Λ-molecule. The analysis of alignment schemes for Λ-shaped and propeller-like chromophores shows that the optimized configuration can be achieved in uniaxially and biaxially stretched chiral polymers and in noncentrosymmetric liquid crystal phases. Potential applications for such media in photonics devices are discussed.
机译:由于有机二阶非线性光学(NLO)材料的高非线性响应,可加工性和低成本,因此可以有效地用于光通信和信号处理的光子学设备中。通常使用极性顺序的介质来确保不存在二阶NLO中要求的反演对称性。这项研究提出了一种方法,可以创建有效的手性非极性轴向排列NLO介质。设计和优化的阶段包括分子工程,分子超极化性的量子力学理论,通过不允许Kleinman的超瑞利散射(KD-HRS)表征生色团,以及分析大部分NLO生色团的宏观比对。可以容易地制造具有高非线性响应的非极性对称组 D D 2 的手性系统在许多聚合和液晶材料中。此类介质的NLO敏感性χ(2)由超极化率张量β的Kleinman不允许的不可约分量定义,该分量转化为无迹对称的二阶张量。使用KD-HRS,可以确定β的所有不可还原成分的品质因数,包括第二级,这与手性非极性介质有关。结果表明,包含一个电子受体和两个供体的共轭Λ形生色团可以具有较大的β二阶成分。在量子力学上,这可以归因于存在 B 对称性的低电势电子状态,即在围绕Λ的两个折叠轴旋转时改变符号的状态。还显示出螺旋桨状分子“结晶紫”具有较大的第二级响应,并且据信在此意义上类似于Λ分子。对Λ型和螺旋桨状生色团的排列方案的分析表明,可以在单轴和双轴拉伸手性聚合物和非中心对称液晶相中实现最佳构型。讨论了这种介质在光子学设备中的潜在应用。

著录项

  • 作者

    Ostroverkhov, Victor P.;

  • 作者单位

    Case Western Reserve University.;

  • 授予单位 Case Western Reserve University.;
  • 学科 Physics Optics.; Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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