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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Long-range energy transfer and ionization in extended quantum systems driven by ultrashort spatially shaped laser pulses
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Long-range energy transfer and ionization in extended quantum systems driven by ultrashort spatially shaped laser pulses

机译:超短空间形状的激光脉冲驱动的扩展量子系统中的远距离能量转移和电离

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摘要

The processes of ionization and energy transfer in a quantum system composed of two distant H atoms with an initial internuclear separation of 100 atomic units (5.29 nm) have been studied by the numerical solution of the time-dependent Schrodinger equation beyond the Born-Oppenheimer approximation. Thereby it has been assumed that only one of the two H atoms was excited by temporally and spatially shaped laser pulses at various laser carrier frequencies. The quantum dynamics of the extended H-H system, which was taken to be initially either in an unentangled or an entangled ground state, has been explored within a linear three-dimensional model, including the two z coordinates of the electrons and the internuclear distance R. An efficient energy transfer from the laser-excited H atom (atom A) to the other H atom (atom B) and the ionization of the latter have been found. It has been shown that the physical mechanisms of the energy transfer as well as of the ionization of atom B are the Coulomb attraction of the laser driven electron of atom A by the proton of atom B and a short-range Coulomb repulsion of the two electrons when their wave functions strongly overlap in the domain of atom B.
机译:通过时间相关的Schrodinger方程的数值解超出了Born-Oppenheimer逼近,研究了由两个遥远的H原子组成的,初始核间距为100个原子单元(5.29 nm)的量子系统中的电离和能量转移过程。 。因此,已经假定两个H原子中只有一个被各种激光载频上的时间和空间形状的激光脉冲激发。在线性三维模型(包括电子的两个z坐标和核间距离R)中探索了扩展的HH系统的量子动力学,该动力学最初被认为是处于无纠缠或纠缠的基态。已经发现了从激光激发的H原子(原子A)到另一个H原子(原子B)的有效能量转移以及后者的电离。已经表明,原子B的能量转移和电离的物理机制是原子B的质子对原子A的激光驱动电子的库仑吸引和两个电子的短程库仑排斥当它们的波函数在原子B的域中强烈重叠时。

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