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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Momentum partition between constituents of exotic atoms during laser-induced tunneling ionization
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Momentum partition between constituents of exotic atoms during laser-induced tunneling ionization

机译:激光诱导隧穿电离过程中外来原子成分之间的动量分配

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The tunneling ionization of exotic atoms such as muonic hydrogen, muonium, and positronium in a strong laser field of circular polarization is investigated, taking into account the impact of the motion of the center of mass on the the tunneling ionization dynamics. The momentum partition between the ionization products is deduced. The effect of the center-of-mass motion for the momentum distribution of the ionization components is determined. The effect scales with the ratio of the electron (muon) to the atomic core masses and is nonnegligible for exotic atoms, while being insignificant for common atoms. It is shown that the electron (muon) momentum shift during the under-the-barrier motion due to themagnetically induced Lorentz force has a significant impact on the momentum distribution of the atomic core and depends on the ratio of the electron to the atomic core masses.
机译:考虑到质心运动对隧穿电离动力学的影响,研究了在圆形偏振的强激光场中外来原子(例如,氢,mu和)的隧穿电离。推导了电离产物之间的动量分配。确定了质心运动对电离组分的动量分布的影响。该效应随电子(μon)与原子核质量的比成比例缩放,对于外来原子不可忽略,而对于普通原子则微不足道。结果表明,在磁阻洛伦兹力的作用下,势垒下运动过程中电子(μon)的动量位移对原子核的动量分布有重要影响,并取决于电子与原子核质量的比值。 。

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