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Controlling material transformation and phonon oscillation with trains of femtosecond laser pulses.

机译:用飞秒激光脉冲序列控制材料转换和声子振荡。

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摘要

Laser transformation of materials is a highly complex process involving multiple steps and time scales. We explored the laser-solid interaction on sub-ps and ps time scales using single and multiple pulses in the high intensity regime. The mechanism of ablation and plasma photon emission for various materials was studied using two 50 fs pulses with variable delay up to 110 ps. A study of the plasma polarization gave rise to a novel spectroscopic technique called polarization resolved laser induced breakdown spectroscopy (PRLIBS).;In a second set of experiments, coherent control of phonon oscillation in GaAs was performed using trains of three pulses with separations 165 fs-1.5 ps. The fluorescence signal generated from the sample showed oscillations with the characteristic phonon period of the crystal. The effect of various laser parameters on the phonon oscillation was studied to reveal the mechanism. A study of the surface morphology was also performed to observe the effect of electron phonon coupling on nanoparticle generation.
机译:材料的激光转化是一个高度复杂的过程,涉及多个步骤和时间范围。我们在高强度状态下使用单个和多个脉冲探索了在亚ps和ps时间尺度上的激光-固体相互作用。使用两个可变延迟高达110 ps的50 fs脉冲研究了各种材料的烧蚀和等离子体光子发射的机理。对等离子体极化的研究产生了一种新的光谱技术,称为极化分辨激光诱导击穿光谱(PRLIBS)。在第二组实验中,使用间隔为165 fs的三个脉冲序列对GaAs中的声子振荡进行相干控制。 -1.5 ps。从样品产生的荧光信号显示出具有晶体特征声子周期的振荡。研究了各种激光参数对声子振荡的影响,以揭示其机理。还进行了表面形态研究,以观察电子声子耦合对纳米粒子产生的影响。

著录项

  • 作者

    Singha, Sima.;

  • 作者单位

    University of Illinois at Chicago.;

  • 授予单位 University of Illinois at Chicago.;
  • 学科 Chemistry Physical.;Physics Fluid and Plasma.;Physics Solid State.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遥感技术;
  • 关键词

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