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Nonsequential double ionization of helium in IR plus XUV two-color laser fields: Collision-ionization process

机译:红外和XUV双色激光场中氦的非顺序双电离:碰撞电离过程

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We investigate the nonsequential double ionization (NSDI) process of an atom in IR+XUV two-color intense laser fields, where the photon energy of the XUV laser is higher than the atomic ionization threshold. By using the frequency-domain theory, we consider the NSDI as a process caused by the collision-ionization mechanism and obtain the NSDI spectrum that presents a multiplateau structure. With the help of channel analysis, we find that the height of a plateau in the NSDI spectrum is determined by the number of XUV photons absorbed by the electrons. Furthermore, to explain the interference structure in the NSDI spectrum, we also compare the contributions of forward and backward collisions to the NSDI probability. We find that the forward collision dominates the contributions to the NSDI when two electrons are ejected along the same direction and both forward and backward collisions make a comparable contribution to NSDI when the two electrons are ejected along opposite directions. By applying the saddle-point approximation, we obtain an energy-circle formula, which may illustrate the formation of the NSDI spectrum structure.
机译:我们研究了IR + XUV两色强激光场中原子的非顺序双电离(NSDI)过程,其中XUV激光的光子能量高于原子电离阈值。通过使用频域理论,我们将NSDI视为由碰撞电离机制引起的过程,并获得了呈现多平台结构的NSDI光谱。借助通道分析,我们发现NSDI光谱中的平台高度取决于电子吸收的XUV光子的数量。此外,为了说明NSDI频谱中的干扰结构,我们还比较了前向和后向碰撞对NSDI概率的贡献。我们发现,当两个电子沿相同方向射出时,前向碰撞主导了对NSDI的贡献;当两个电子沿相反方向射出时,向前和向后碰撞均对NSDI产生了可比的贡献。通过应用鞍点近似,我们获得了一个能量圆公式,该公式可以说明NSDI光谱结构的形成。

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