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首页> 外文期刊>Photonics >XUV Transient Absorption Spectroscopy: Probing Laser-Perturbed Dipole Polarization in Single Atom, Macroscopic, and Molecular Regimes
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XUV Transient Absorption Spectroscopy: Probing Laser-Perturbed Dipole Polarization in Single Atom, Macroscopic, and Molecular Regimes

机译:XUV瞬态吸收光谱:在单原子,宏观和分子状态下探测激光扰动的偶极极化

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摘要

We employ an extreme ultraviolet (XUV) pulse to impulsively excite dipole polarization in atoms or molecules, which corresponds to coherently prepared superposition of excited states. A delayed near infrared (NIR) pulse then perturbs the fast evolving polarization, and the resultant absorbance change is monitored in dilute helium, dense helium, and sulfur hexa?uoride (SF6) molecules. We observe and quantify the time-dependence of various transient phenomena in helium atoms,includinglaser-inducedphase(LIP),time-varying(AC)Starkshift,quantumpathinterference, and laser-induced continuum structure. In the case of dense helium targets, we discuss nonlinear macroscopic propagation effects pertaining to LIP and resonant pulse propagation, which accoun tfor the appearance of new spectral features in transient lineshapes. We then use tunable NIR photons to demonstrate the wavelength dependence of the transient laser induced effects. In the case of molecular polarization experiment in SF6, we show suppression of XUV photoabsorption corresponding to inter-valence transitions in the presence of a strong NIR ?eld. In each case, the temporal evolution of transient absorption spectra allows us to observe and understand the transient laser induced modi?cations of the electronic structure of atoms and molecules.
机译:我们使用极紫外(XUV)脉冲来脉冲激发原子或分子中的偶极极化,这与相干准备的激发态叠加相对应。然后,延迟的近红外(NIR)脉冲会扰动快速发展的极化,并在稀氦,致密氦和六氟化硫(SF6)分子中监测所得的吸光度变化。我们观察和量化了氦原子中各种瞬态现象的时间依赖性,包括激光诱导的相位(LIP),时变(AC)Starkshift,量子路径干扰和激光诱导的连续体结构。在高密度氦靶的情况下,我们讨论了与LIP和共振脉冲传播有关的非线性宏观传播效应,这有助于在瞬态线形中出现新的光谱特征。然后,我们使用可调NIR光子来演示瞬态激光诱导效应的波长依赖性。在SF6中进行分子极化实验的情况下,我们显示了在强NIR场存在下XUV光吸收的抑制,其对应于价态跃迁。在每种情况下,瞬态吸收光谱的时间演化都使我们能够观察和理解瞬态激光诱导的原子和分子电子结构的修饰。

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