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Multiorbital and excitation effects on dissociative double ionization of CO molecules in strong circularly polarized laser fields

机译:对强圆偏振激光田CO分子解离双电离的多血管和励磁作用

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We investigate the sequential double-ionization dynamics for the dissociative channel C~+ + O~+ of CO molecules in strong circularly polarized laser fields using four-particle coincidence measurements. By combining the fragmentation-pathway-resolved ionic angular distributions with the molecular frame photoelectron angular distributions distinguished for each ionization step, the significant effects of multiorbital ionization and laserdriven excitation are revealed. For the main distribution of ionic fragments in the polarization plane, the participation of the highest-occupied molecular orbitals (HOMO, HOMO-1, and HOMO-2) and the important contribution of postionization excitation are identified for various fragmentation pathways. Comparisons among different intensities further indicate the dependence of the multiorbital ionization on laser intensities. For the substantial emissions of fragments out of the polarization plane, however, the ionization from HOMO-1 (and subsequent excitation) always plays a crucial role. This work demonstrates the feasibility of disentangling the complex dynamics in molecular dissociative double ionization with the angular streaking method.
机译:我们研究了使用四颗粒符合测量的强圆偏振激光场中CO分子的分离通道C〜+ + O + + + + O +的顺序双电离动力学。通过将碎裂途径分辨的离子角分配与分子框架相角分布相结合,揭示了多轴电离和激光激发的显着影响。对于偏振平面中的离子片段的主要分布,鉴定了各种碎裂途径的最高占用分子轨道(HOMO,HOMO-1和HOMO-2)的参与和外部化激发的重要贡献。不同强度的比较进一步表明多血管电离对激光强度的依赖性。然而,对于偏振平面的碎片的大量排放,来自Homo-1(和随后的激发)的电离始终起到至关重要的作用。这项工作展示了用角条纹方法解开分子解除双电离中的复杂动态的可行性。

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