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Enhancement of Laser-Induced Fluorescence by Intense Terahertz Pulses in Gases

机译:气体中强烈的太赫兹脉冲增强激光诱导的荧光

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The enhancement of laser-induced fluorescence by intense terahertz pulses was studied both theoretically and experimentally using selected gases. Semiclassical physical picture incorporating photoionization, electron heating, impact excitation, and dissociative recombination was used to explain the plasma dynamics under terahertz radiation in picosecond scale. The dependences of enhanced fluorescence on the terahertz field, laser intensity, and atomic properties were systematically investigated with neon, argon, krypton, xenon, methane ( $hbox{CH}_{4}$), ethane ( $hbox{C}_{2}hbox{H}_{6}$), propane ($hbox{C}_{3}hbox{H}_{8}$ ), and n-butane ( $hbox{C}_{4}hbox{H}_{10}$) gases. In noble gas plasma, both narrow line emission and broad continuum emission were found to be enhanced by the terahertz field. Their enhancement ratios and time-dependent enhanced fluorescence are greatly influenced by the scattering cross section and ionization potential of atoms. In alkane gas plasma, the enhancement of the fluorescence emission from various molecular fragments was also observed.
机译:理论上和实验上都使用选定的气体来研究强太赫兹脉冲对激光诱导的荧光的增强作用。半经典的物理图像结合了光电离,电子加热,冲击激发和解离复合作用,被用来解释皮秒级太赫兹辐射下的等离子体动力学。用氖,氩、,、氙,甲烷($ hbox {CH} _ {4} $),乙烷($ hbox {C} _)系统地研究了增强的荧光对太赫兹场,激光强度和原子性质的依赖性。 {2} hbox {H} _ {6} $),丙烷($ hbox {C} _ {3} hbox {H} _ {8} $)和正丁烷($ hbox {C} _ {4} hbox {H} _ {10} $)气体。在稀有气体等离子体中,太赫兹场增强了窄线发射和宽连续谱发射。它们的增强比和随时间变化的增强荧光受到原子的散射截面和电离势的极大影响。在烷烃气体等离子体中,还观察到了来自各种分子片段的荧光发射的增强。

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