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首页> 外文期刊>International Journal of Quantum Chemistry >Dynamics of Electronic Motion in Hydrogen Atom under Parallel Strong Oscillating Magnetic Field and Intense Laser Fields
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Dynamics of Electronic Motion in Hydrogen Atom under Parallel Strong Oscillating Magnetic Field and Intense Laser Fields

机译:平行强振荡磁场和强激光场作用下氢原子中电子运动的动力学

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The mechanism of ionization of an H atom interacting with intense laser electric fields is altered when a strong, oscillating magnetic field is applied along a direction parallel to the laser field. In this first study, these two strongly nonperturbative situations have been combined together and the corresponding time-dependent (TD) Schrodinger equation has been numerically solved without using any basis set. The electric field arising out of the magnetic field and the magnetic field arising out of the laser electric field are found to be negligibly small, thereby not affecting the results. There are two main, apparently counter-intuitive results from this study of parallel fields of the same frequency but different field strengths: (1) In presence of an oscillating magnetic field, the ionization rate due to the laser field diminishes, and (2) increasing the laser intensity, keeping the magnetic field strength the same, makes the electron density ionize with a lesser rate, in contrast to the situation with intense lasers in the absence of a strong TD magnetic field. (C) 2015 Wiley Periodicals, Inc.
机译:当沿着平行于激光场的方向施加强的振荡磁场时,与强激光场相互作用的H原子的电离机理就会改变。在这项第一项研究中,将这两个强烈的非扰动情况组合在一起,并且在不使用任何基础集的情况下,通过数值方法求解了相应的时变(TD)Schrodinger方程。发现由磁场产生的电场和由激光电场产生的磁场很小,可以忽略不计,从而不影响结果。这项对相同频率但场强不同的平行场的研究得出两个主要的明显违反直觉的结果:(1)在存在振荡磁场的情况下,由激光场引起的电离速率减小,(2)与在没有强TD磁场的情况下使用强激光的情况相比,增加激光强度,保持磁场强度不变会使电子密度以较低的速率电离。 (C)2015年Wiley Periodicals,Inc.

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