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Generating and Using Terahertz Radiation to Explore Carrier Dynamics of Semiconductor and Metal Nanostructures.

机译:产生并使用太赫兹辐射来探索半导体和金属纳米结构的载流子动力学。

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摘要

In this thesis, I present studies in the field of terahertz (THz) spectroscopy. These studies are divided into three areas: Development of a narrowband THz source, the study of carrier transport in metal thin films, and the exploration of coherent dynamics of quasi-particles in semiconductor nanostructures with both broadband and narrowband THz sources. The narrowband THz source makes use of type II difference frequency generation (DFG) in a nonlinear crystal to generate THz waves. By using two linearly chirped, orthogonally polarized optical pulses to drive the DFG, we were able to produce a tunable source of strong, narrowband THz radiation. The broadband source makes use of optical rectification of an ultra-short optical pulse in a nonlinear crystal to generate a single-cycle THz pulse.;Linear spectroscopic measurements were taken on NiTi-alloy thin films of various thicknesses and titanium concentrations with broadband THz pulses as well as THz power transmission measurements. By applying a combination of the Drude model and Fresnel thin-film coefficients, we were able to extract the DC resistivity of the NiTi-alloy thin films.;Using the narrowband source of THz radiation, we explored the exciton dynamics of semiconductor quantum wells. These dynamics were made sense of by observing time-resolved transmission measurements and comparing them to theoretical calculations. By tuning the THz photon energy near exciton transition energies, we were able to observe extreme nonlinear optical transients including the onset of Rabi oscillations. Furthermore, we applied the broadband THz waves to quantum wells embedded in a microcavity, and time-resolved reflectivity measurements were taken. Many interesting nonlinear optical transients were observed, including interference effects between the modulated polariton states in the sample.
机译:在本文中,我提出了太赫兹(THz)光谱学领域的研究。这些研究分为三个领域:窄带太赫兹源的开发,金属薄膜中载流子传输的研究以及宽带和窄带太赫兹源在半导体纳米结构中准粒子的相干动力学研究。窄带太赫兹源利用非线性晶体中的II型差分频率生成(DFG)来产生太赫兹波。通过使用两个线性chi正交偏振光脉冲来驱动DFG,我们能够产生可调谐的强,窄带THz辐射源。宽带光源利用非线性晶体中的超短光脉冲的光整流来产生单周期THz脉冲。;使用宽带THz脉冲对各种厚度和钛浓度的NiTi合金薄膜进行线性光谱测量以及太赫兹功率传输测量。通过结合使用Drude模型和菲涅耳薄膜系数,我们可以提取镍钛合金薄膜的直流电阻率。通过使用太赫兹辐射的窄带源,我们研究了半导体量子阱的激子动力学。通过观察时间分辨的传输测量并将其与理论计算进行比较,可以了解这些动态。通过在激子跃迁能附近调节太赫兹光子能量,我们能够观察到极端的非线性光学瞬变,包括拉比振荡的发生。此外,我们将宽带太赫兹波应用于嵌入微腔的量子阱,并进行了时间分辨反射率测量。观察到许多有趣的非线性光学瞬变,包括样品中调制极化子状态之间的干涉效应。

著录项

  • 作者

    Jameson, Andrew D.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Physics General.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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