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Prediction of attosecond light pulses in the VUV range in a high-order-harmonic-generation regime

机译:在高次谐波产生机制中VUV范围内的阿秒光脉冲的预测

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摘要

Attosecond light pulses within the vacuum ultraviolet (VUV) energy range are predicted by solving the time-dependent Schrödinger equation (TDSE) for a model neon atom in short laser pulses of different field polarization states. We compare high-order harmonic generation in linearly polarized laser pulses to the method of polarization gating and find attosecond pulses that approach the Fourier limit of 700 as given by an indium filter, spectrally centered at 15 eV. At such low energies, harmonic generation has low sensitivity to ellipticity, which enables the generation of elliptically polarized attosecond pulses. We also show that emission at the atomic transition energies is strongly damped by including intensity averaging. © 2013 American Physical Society.
机译:通过求解不同场偏振态的短激光脉冲中模型氖原子的时间相关薛定ding方程(TDSE),可以预测真空紫外(VUV)能量范围内的阿秒光脉冲。我们将线性偏振激光脉冲中的高次谐波生成与偏振门控方法进行了比较,并发现了接近15伏特的铟滤光片给出的接近700傅立叶极限的阿秒脉冲。在如此低的能量下,谐波的产生对椭圆度的灵敏度低,这使得能够产生椭圆极化的阿秒脉冲。我们还表明,通过包括强度平均,原子过渡能量处的发射受到强烈抑制。 ©2013美国物理学会。

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