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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Tunneling ionization of atoms and ions in a linear electromagnetic wave and a constant magnetic field and the 'imaginary time' method
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Tunneling ionization of atoms and ions in a linear electromagnetic wave and a constant magnetic field and the 'imaginary time' method

机译:线性电磁波中原子和离子的隧道电离和恒定磁场和“假想时间”方法

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摘要

The tunneling ionization of atoms and negative ions in an intense linearly polarized laser field and a constant uniform magnetic field is discussed in the quasiclassical theory framework. We use the imaginary time method, where tunneling is described by the classical equations of motion but with purely imaginary time to derive the extremal subbarrier trajectory of the photoelectron. This allows to obtain simple analytical expressions for ionization rates in the tunneling regime for an arbitrary angle between a laser beam and a constant magnetic field accounting for the Coulomb interaction of the photoelectron with the atomic core. The resonance case, when the frequency of a monochromatic electromagnetic wave and the cyclotron frequency are equal, is also considered. The limits of weak and strong magnetic fields and the expressions for the barrier width and the emission angle of photoelectrons are discussed. It is shown that a magnetic field in the presence of a linear electromagnetic wave increases the barrier width and thus decreases the ionization probability, i.e., stabilizes the bound level.
机译:在拟卡斯科理论框架中讨论了强烈的线性偏振光场和恒定均匀磁场中原子和负离子的隧道电离。我们使用虚数方法,其中隧道由运动的经典方程描述,但是具有纯粹的假想时间来导出光电子的极端子载波轨迹。这允许在激光束和恒定磁场之间的任意角度获得隧穿方案中的电离分析表达式,用于激光束与光电子与原子芯的库仑相互作用的任意角度。当单色电磁波和回旋频的频率相等时,共振壳也被考虑。讨论了弱磁场的限制和光电子的屏障宽度和发射角度的表达。结果表明,存在线性电磁波存在的磁场增加了阻挡宽度,从而降低电离概率,即稳定结合水平。

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