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The importance of Rydberg orbitals in dissociative ionization of small hydrocarbon molecules in intense laser fields

机译:里德堡轨道在强激光场中小烃分子的解离电离中的重要性

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摘要

Much of our intuition about strong-field processes is built upon studies of diatomic molecules, which typically have electronic states that are relatively well separated in energy. In polyatomic molecules, however, the electronic states are closer together, leading to more complex interactions. A combined experimental and theoretical investigation of strong-field ionization followed by hydrogen elimination in the hydrocarbon series C2D2, C2D4 and C2D6 reveals that the photofragment angular distributions can only be understood when the field-dressed orbitals rather than the field-free orbitals are considered. Our measured angular distributions and intensity dependence show that these field-dressed orbitals can have strong Rydberg character for certain orientations of the molecule relative to the laser polarization and that they may contribute significantly to the hydrogen elimination dissociative ionization yield. These findings suggest that Rydberg contributions to field-dressed orbitals should be routinely considered when studying polyatomic molecules in intense laser fields.
机译:我们对强场过程的大部分直觉是建立在对双原子分子的研究之上的,双原子分子通常具有在能量上相对较好地分离的电子态。然而,在多原子分子中,电子态靠得更近,导致更复杂的相互作用。结合实验和理论研究,对碳氢化合物系列C2D2,C2D4和C2D6中的强场电离和氢消除进行了研究,结果表明,只有在考虑了场修整轨道而不是无场轨道的情况下,才能理解光碎屑角分布。我们测得的角度分布和强度依赖性表明,对于分子相对于激光偏振的某些方向,这些场整修的轨道可以具有很强的里德伯格特性,并且它们可能对氢消除解离电离产率有很大贡献。这些发现表明,在强激光场中研究多原子分子时,应常规考虑里德伯格对场修整轨道的贡献。

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