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首页> 外文期刊>Journal of Modern Optics >Generation of single-cycle pulses spaced by an integer number of molecular periods
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Generation of single-cycle pulses spaced by an integer number of molecular periods

机译:产生间隔为整数个分子周期的单周期脉冲

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Previous work has shown that a new light source consisting of mutually coherent spectral sidebands ranging from 2.94mum to 195nm can be obtained by adiabatic preparation of a molecular ensemble in a single vibrational superposition state. Molecular motion rnodulated the refractive index and thus led to the frequency modulation of the driving beat-note. The resulting sidebands were equidistant and separated by a frequency equal to the modulation frequency. In the present work we extend this idea by applying more input fields to the Molecular ensemble. We take two input fields separated by one half of the modulation frequency, such that their second harmonics drive the molecular ensemble. The proposed approach results in generating an equidistant comb of frequencies separated by a fraction (1/4) of the modulation frequency. Moreover, the intensity of the generated train of pulses increases by the inverse of the same factor. An important feature of the generated comb is that it reaches zero frequency, and as a consequence allows for control of the absolute phase, or the phase of the carrier with respect to the envelope. Since many physical processes, for example photoionization of molecules by intense laser pulses, are influenced by the time dependence of the electric field (and not the envelope), control of absolute phase will become an important issue for few-cycle Pulses.
机译:先前的工作表明,可以通过在单个振动叠加状态下绝热制备分子集成体来获得一种新的光源,该光源由范围为2.94μm至195nm的相互相干的光谱边带组成。分子运动抑制了折射率,因此导致了驱动节拍音符的频率调制。产生的边带是等距的,并以等于调制频率的频率分开。在当前的工作中,我们通过将更多的输入字段应用于“分子组”来扩展该思想。我们将两个输入场分开一半的调制频率,以使它们的二次谐波驱动分子整体。所提出的方法导致生成由调制频率的一小部分(1/4)分开的等距梳齿。此外,所产生的脉冲序列的强度以相同因子的倒数增加。产生的梳的一个重要特征是它达到零频率,因此可以控制绝对相位或相对于包络线的载波相位。由于许多物理过程(例如通过强激光脉冲使分子光电离)受电场(而非包络线)的时间依赖性影响,因此绝对相位的控制将成为少周期脉冲的重要问题。

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