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Study on generation of attosecond pulse with polarization gating.

机译:用极化门控产生阿秒脉冲的研究。

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摘要

It is still a dream to image the dynamics of electrons in atoms and molecules experimentally. This is due to the fact that such motion takes place in an ultra-short time scale; for example, an electron moves around the Bohr orbit in about 150-as (1 as = 10-18 s), and pulses much shorter than this limit are not currently available to probe such fast dynamics. In recent years, an isolated single attosecond pulse has been produced by extracting the cutoff of harmonic spectrum driven by a laser pulse as short as ∼5fs (1fs =10-15 s). But, these pulses are still too long in order to make the dream come true. Here, we study the possibility of generation of a much shorter and wavelength tunable single attosecond pulse by using polarization gating.; In the experiment, we compressed ∼30fs pulses from the laser amplifier down to ∼6fs and characterized them. These linearly polarized pulses were converted to ellipticity varying pulses, and by exploiting the property of the strong dependence of the harmonic signal with the ellipticity of the laser, an XUV supercontinuum was produced in the harmonic spectrum which could support 60-as pulses. The bandwidth of such a supercontinuum, and therefore the duration of the attosecond pulses, is limited mainly by the currently available energy of the driving laser pulses at few cycle limits. In this project, we present an approach which allowed us to scale up the energy of such pulses by a factor of 1.5 in "Hollow Core Fiber/Chirped Mirrors Compressor".; Finally, in order to temporarily characterize the attosecond pulses we designed and built an "Attosecond Streak Camera". Most of such cameras to date are limited to measuring a 1 dimensional energy spectrum and have only a few degrees of acceptance angle. Our camera is capable of measuring 2d momentum of the photoelectrons with large acceptance angle, for example ∼65° at the photoelectron of energy ∼15 eV. Recently, we observed the sidebands in addition to the main peaks in their laser assisted XUV photoelectron spectrum. The single attosecond pulses, after being characterized with this high speed camera, can be used to explore the dynamics of electrons at the attosecond scale.
机译:通过实验成像原子和分子中电子的动力学仍然是一个梦想。这是由于这样的运动是在极短的时间内发生的。例如,电子绕玻尔轨道运动的时间约为150-as(1 as = 10-18 s),比该极限短得多的脉冲目前尚无法探测到如此快速的动力学。近年来,通过提取由短至约5fs(1fs = 10-15 s)的激光脉冲驱动的谐波频谱的截止值,产生了一个孤立的单个阿秒脉冲。但是,这些脉冲仍然太长,无法实现梦想。在这里,我们研究了通过极化选通产生更短且波长可调的单个阿秒脉冲的可能性。在实验中,我们将来自激光放大器的〜30fs脉冲压缩至〜6fs,并对其进行了表征。这些线性极化的脉冲被转换为椭圆率变化的脉冲,并且通过利用谐波信号与激光器的椭圆率的强相关性,在谐波频谱中产生了XUV超连续谱,可以支持60 as脉冲。这种超连续谱的带宽以及因此的阿秒脉冲的持续时间主要受到在很少的循环极限时驱动激光脉冲的当前可用能量的限制。在该项目中,我们提出了一种方法,该方法使我们可以在“空心纤维/斜面镜压缩机”中将此类脉冲的能量放大1.5倍。最后,为了临时表征阿秒脉冲,我们设计并制造了“阿托秒条纹相机”。迄今为止,大多数此类相机仅限于测量一维能谱,并且仅具有几度的接收角。我们的相机能够以较大的接受角(例如在能量约为15 eV的光电子时约为65°)测量光电子的2d动量。最近,我们在激光辅助XUV光电子光谱中观察到了除主峰以外的边带。在用此高速相机表征后,单个阿秒脉冲可用于探索电子在阿秒尺度上的动力学。

著录项

  • 作者

    Ghimire, Shambhu.;

  • 作者单位

    Kansas State University.$bDepartment of Physics.;

  • 授予单位 Kansas State University.$bDepartment of Physics.;
  • 学科 Physics Molecular.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;光学;
  • 关键词

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