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Ultrafast terahertz electrodynamics of photonic and electronic nanostructures

机译:光子和电子纳米结构的超快太赫兹电动力学

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摘要

This thesis summarizes my work on using ultrafast laser pulses to study Terahertz (THz) electrodynamics of photonic and electronic nanostructures and microstructures. Ultrafast time-resolved (optical, NIR, MIR, THz) pump-probe spectroscopy setup has been successfully built, which enables me to perform a series of relevant experiments. Firstly, a novel high efficiency and compact THz wave emitter based on split-ring-resonators has been developed and characterized. The emitter can be pumped at any wavelength by tailoring the magnetic resonance and could generate gapless THz waves covering the entire THz band. Secondly, two kinds of new photonic structures for THz wave manipulation have been successfully designed and characterized. One is based on the 1D and 2D photo-imprinted diffractive elements. The other is based on the photoexcited double-split-ring-resonator metamaterials. Both structures are flexible and can modulate THz waves with large tunability. Thirdly, the dark excitons in semiconducting single-walled carbon nanotubes are studied by optical pump and THz probe spectroscopy, which provides the first insights into the THz responses of nonequilibrium excitonic correlations and dynamics from the dark ground states in carbon nanotubes. Next, several on-going projects are briefly presented such as the study of ultrafast THz dynamics of Dirac fermions in topological insulator Bi$_{2}$Se$_{3}$ with Mid-infrared excitation. Finally, the thesis ends with a summary of the completed experiments and an outlook of the future plan.
机译:本文总结了我在使用超快激光脉冲研究光子和电子纳米结构以及微结构的太赫兹(THz)电动力学方面的工作。已成功建立了超快的时间分辨(光学,NIR,MIR,THz)泵浦探针光谱学设置,这使我能够进行一系列相关的实验。首先,开发并表征了一种新颖的基于开环谐振器的高效紧凑型太赫兹波发射器。通过调整磁共振,可以在任何波长下泵浦发射器,并且可以产生覆盖整个THz频带的无间隙THz波。其次,成功设计和表征了两种新型的用于太赫兹波操纵的光子结构。一种是基于1D和2D光压印衍射元件。另一种是基于光激发的双裂环谐振器超材料。两种结构都非常灵活,并且可以调制具有很大可调性的太赫兹波。第三,通过光泵和太赫兹探针光谱学研究了半导体单壁碳纳米管中的暗激子,这为从碳纳米管中暗基态获得的非平衡激子相关性和动力学的太赫兹响应提供了第一见解。接下来,简要介绍几个正在进行的项目,例如对带有中红外激发的拓扑绝缘子Bi $ _ {2} $ Se $ _ {{3} $)中的Dirac费米子的超快THz动力学进行研究。最后,论文对完成的实验进行了总结,并对未来的计划进行了展望。

著录项

  • 作者

    Luo, Liang;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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