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首页> 外文期刊>Physical Review, A >Controlling electron-electron correlation in frustrated double ionization of triatomic molecules with orthogonally polarized two-color laser fields
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Controlling electron-electron correlation in frustrated double ionization of triatomic molecules with orthogonally polarized two-color laser fields

机译:用正交偏振的双色激光场控制三族语分子的令人沮丧的双电离的电子相关性

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摘要

We demonstrate the control of electron-electron correlation in frustrated double ionization (FDI) of the two-electron triatomic molecule D_3~+ when driven by two orthogonally polarized two-color laser fields. We employ a three-dimensional semiclassical model that fully accounts for the electron and nuclear motion in strong fields. We analyze the FDI probability and the distribution of the momentum of the escaping electron along the polarization direction of the longer wavelength and more intense laser field. These observables, when considered in conjunction, bear clear signatures of the prevalence or absence of electron-electron correlation in FDI, depending on the time delay between the two laser pulses. We find that D_3~+ is a better candidate than H_2 for demonstrating also experimentally that electron-electron correlation indeed underlies FDI.
机译:当由两个正交偏振的双色激光场驱动时,我们证明了在双电子三相分子D_3〜+的挫折双电离(FDI)中的控制。 我们采用了一款三维半导体模型,完全占据了强大领域的电子和核动作。 我们分析了FDI概率和沿着较长波长和更强烈的激光场的偏振方向的脱离电子的动量分布。 当结合考虑时,这些可观察到的可观察到通过在FDI中具有清晰差异或缺乏电子相关性,这取决于两个激光脉冲之间的时间延迟。 我们发现D_3〜+是比H_2更好的候选者,用于证明电子电子相关性确实是FDI的基础。

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