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Attosecond pulse carrier-envelope phase effects on ionized electron momentum and energy distributions: roles of frequency, intensity and an additional IR pulse

机译:阿秒脉冲载波包络相位对电离电子动量和能量分布的影响:频率,强度和附加IR脉冲的作用

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摘要

The effects of the carrier-envelope phase (CEP) of a few-cycle attosecond pulse on ionized electron momentum and energy spectra are analyzed, both with and without an additional few-cycle IR pulse. In the absence of an IR pulse, the CEP-induced asymmetries in the ionized electron momentum distributions are shown to vary as the 3/2 power of the attosecond pulse intensity. These asymmetries are also found to satisfy an approximate scaling law involving the frequency and intensity of the attosecond pulse. In the presence of even a very weak IR pulse (having an intensity of the order of 1011–1012 W cm−2), the attosecond pulse CEP-induced asymmetries in the ionized electron momentum distributions are found to be significantly augmented. In addition, for higher IR laser intensities, we observe for low electron energies peaks separated by the IR photon energy in one electron momentum direction along the laser polarization axis; in the opposite direction, we find structured peaks that are spaced by twice the IR photon energy. Possible physical mechanisms for such asymmetric, low-energy structures in the ionized electron momentum distribution are proposed. Our results are based on single-active-electron solutions of the three-dimensional, time-dependent Schrödinger equation including atomic potentials appropriate for the H and He atoms.
机译:分析了几个周期的阿秒脉冲的载流子包络相(CEP)对电离电子动量和能谱的影响,无论是否有附加的几个周期的IR脉冲。在没有IR脉冲的情况下,电离电子动量分布中的CEP诱导的不对称性显示为随着阿秒脉冲强度的3/2次方而变化。还发现这些不对称满足涉及阿秒脉冲的频率和强度的近似缩放定律。发现即使存在非常弱的IR脉冲(强度为1011–1012 W cm-2),也可以显着增强阿秒脉冲CEP诱导的电离电子动量分布中的不对称性。此外,对于更高的红外激光强度,我们观察到在沿激光偏振轴的一个电子动量方向上,由红外光子能量隔开的低电子能量峰;在相反的方向上,我们发现结构化的峰之间的距离是IR光子能量的两倍。提出了在电离电子动量分布中这种不对称,低能量结构的可能物理机制。我们的结果基于三维时变Schrödinger方程的单活性电子解,其中包括适合H和He原子的原子势。

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