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Intense field ionization of diatomic molecules: Two-center interference and tunneling

机译:双原子分子的强场电离:两中心干涉和隧穿

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摘要

We investigate the ionization of model diatomic molecules exposed in intense laser fields both numerically and analytically. Our simulations show that, in the tunneling region, the interplay of the tunneling effect and molecular two-center structure has an important role in ionization. It can lead to the enhancement of ionization in molecules as compared to their reference atoms with similar ionization potential. Furthermore, it also plays a dominating role in the angle dependence of molecular ionization. This effect is different from that of two-center interference in ionization. The latter manifests itself remarkably in the multiphoton region and can cause the ionization suppression of molecules in this region. Our further comparisons suggest the significant influence of the orbital symmetry of the reference atom on molecular ionization comparison experiments.
机译:我们在数值和分析上研究暴露在强激光场中的模型双原子分子的电离。我们的模拟表明,在隧穿区域中,隧穿效应与分子二中心结构之间的相互作用在电离中具有重要作用。与具有相似电离势的参考原子相比,它可以导致分子中电离的增强。此外,它在分子电离的角度依赖性中也起着主导作用。此效果不同于电离中的两中心干扰。后者在多光子区域中显着地表现出来,并且可以引起该区域中分子的电离抑制。我们的进一步比较表明,参考原子的轨道对称性对分子电离比较实验具有重大影响。

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