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Holding molecular dications together in strong laser fields

机译:在强激光场中将分子指示结合在一起

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摘要

Metastable channel of doubly ionized carbon monoxide, CO2+, was scantly seen in previous strong-field experiments at the visible wavelength region, but was commonly observed using single high-energy photon or electron excitation. For the first time with near-IR ultrashort-pulse radiation, we observe an abundance of CO2+. We show that CO2+ results from nonsequential double ionization, while its dissociation counterpart, C++O+, results from sequential processes, and CO2+ can be obtained through either single high-energy photon or electron excitation or multiphoton ionization with ultrashort pulses before a critical internuclear distance is reached. Our study demonstrates the experimental conditions to converge the outcomes from two vastly different regimes, namely, multiphoton excitation and ionization in strong fields and single high-energy photon or electron excitation and ionization in weak fields.
机译:在以前的强场实验中,在可见光波长区域很少看到双电离的一氧化碳CO2 +的亚稳态通道,但通常使用单个高能光子或电子激发来观察。首次使用近红外超短脉冲辐射,我们观察到了大量的CO2 +。我们表明,CO2 +来自非顺序双电离,而其解离对应物C ++ O +是来自顺序过程的,并且CO2 +可以通过单个高能光子或电子激发或在临界核之间通过超短脉冲进行多光子电离而获得。达到距离。我们的研究表明了在两个条件截然不同的条件下汇聚结果的实验​​条件,即强场中的多光子激发和电离以及弱场中的单个高能光子或电子激发和电离。

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