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Investigation of electronic excitation dynamics in molecular crystals via picosecond laser spectroscopy.

机译:通过皮秒激光光谱研究分子晶体中的电子激发动力学。

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摘要

Although the spectroscopy of aromatic crystals such as naphthalene has been known for decades, recent advances in laser spectroscopy have made it possible to study the dynamic nature of the molecular exciton in these systems. Electronic excitation dynamics studied by picosecond time-resolved laser spectroscopy in the molecular crystal naphthalene yields information about energy transfer which can not be obtained otherwise. The nature of these dynamics are affected greatly by the exciton type and exciton band structure of this system. Study of steady state spectroscopy gives information about the equilibrium population of the exciton states while time-resolved spectroscopy can show the effects of electronic energy transfer.;Results showing the effects of impurity induced states on exciton trapping in ;Determination of intra-band exciton scattering is optically detected using picosecond time-resolved laser spectroscopy in the quasi-two-dimensional first singlet exciton of naphthalene. Thermalization of the exciton band is complete within a few hundred picoseconds for pure material. Comparing inelastic exciton scattering results of nominally pure crystal to those with substitutional and isotopic impuries can test impurity scattering effects on the inelastic scattering rate. Comparing results to one-dimensional exciton scattering mark the diverse method of approaching equilibrium with thermalization times differing by orders of magnitude.
机译:尽管数十年来一直知道诸如萘等芳香族晶体的光谱学,但是激光光谱学的最新进展使得研究这些系统中分子激子的动力学性质成为可能。通过皮秒时间分辨激光光谱学在分子晶体萘中研究的电子激发动力学产生了有关能量转移的信息,而这些信息否则就无法获得。这些动力学的性质在很大程度上受该系统的激子类型和激子能带结构的影响。稳态光谱学的研究给出了激子态平衡种群的信息,而时间分辨光谱学可以表明电子能量转移的影响。结果表明杂质诱导态对激子俘获的影响;带内激子散射的测定使用皮秒时间分辨激光光谱在准二维二维单重态萘激子中进行光学检测。对于纯材料,激子带的热化在几百皮秒内完成。将名义上纯净的晶体的非弹性激子散射结果与具有置换和同位素杂质的晶体进行比较,可以测试杂质对非弹性散射率的散射效应。将结果与一维激子散射进行比较,标志了趋近平衡的多种方法,其中热化时间相差几个数量级。

著录项

  • 作者

    Mooney, Charles Everett.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Physical chemistry.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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