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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Theory of infrared-dressed atomic photoionization by extremely ultraviolet attosecond pulse trains
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Theory of infrared-dressed atomic photoionization by extremely ultraviolet attosecond pulse trains

机译:极紫外阿秒脉冲串进行红外修饰的原子光电离的理论

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We theoretically study the infrared (IR)-dressed photoionization of atoms excited by extreme ultraviolet attosecond pulse trains above ionization threshold. The initial state of atoms is treated perturbatively by the IR field, and the continuum states are considered as Coulomb-Volkov (CV) waves. CV waves can much reduce the gauge difference calculated with Volkov waves, and, in general, the contribution of ground-state perturbation to the photoelectron spectrum is negligible. Our calculations show qualitative agreement with the experimental results [Phys. Rev. Lett. 95, 013001 (2005)]. An evident dependence of the photoelectron spectrum on the delay phase between the IR field and the attosecond pulse train is exhibited in both helium and argon. The angular distribution of photoelectrons with various IR polarizations and the corresponding photoelectron spectra are presented. The linearly polarized IR fields are shown to have a higher controlling capability of the spectrum via IR delay phases than the circularly polarized fields. On the other hand, the circularly polarized IR fields have a fruitful angular dependence of photoelectrons with various IR delay phases.
机译:我们从理论上研究了高于电离阈值的极紫外阿秒脉冲序列激发的原子的红外(IR)修饰光电离。原子的初始状态被IR场扰动地对待,连续态被认为是库仑-沃尔科夫(CV)波。 CV波可以大大减少用Volkov波计算出的轨距差异,并且通常,基态扰动对光电子谱的贡献可以忽略不计。我们的计算结果与实验结果在质量上相吻合。牧师95,013001(2005)]。氦气和氩气中均显示出光电子光谱对红外场与阿秒脉冲串之间的延迟相位的明显依赖性。给出了具有各种红外偏振的光电子的角分布和相应的光电子光谱。线性偏振红外场显示出通过红外延迟相位比圆偏振场具有更高的频谱控制能力。另一方面,圆偏振IR场具有具有各种IR延迟相位的光电子的有效角度依赖性。

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