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强场分子电离中的中性-离子态关联。

Neutral-ionic state correlations in strong-field molecular ionization.

机构信息

Department of Physics and Astronomy, Stony Brook University, Stony Brook, New York 11794, USA.

出版信息

Phys Rev Lett. 2012 Nov 16;109(20):203007. doi: 10.1103/PhysRevLett.109.203007. Epub 2012 Nov 14.

Abstract

We study correlations between neutral and ionic states in strong-field molecular ionization. We compare predictions based on Dyson orbital norms and quasistatic semiclassical tunneling theories (Keldysh and molecular orbital Ammosov-Delone-Krainov) with more detailed calculations of strong-field ionization which take into account (i) the Coulomb interaction between the outgoing continuum electron wave packet and the remaining bound electrons and (ii) electron-core interactions that cause distortions of the electronic continuum states during the ionization event. Our results highlight the prominence of electronic rearrangement effects in strong-field ionization with intense ultrafast laser pulses, where the outgoing continuum electron can cause electronic transitions in the parent ion. Calculations and measurements for excited uracil molecules reveal the breakdown of Keldysh-weighted Dyson norm predictions for ionization to different states of the molecular cation in the strong-field regime.

摘要

我们研究了强场分子电离中中性和离子态之间的相关性。我们将基于 Dyson 轨道范数和准静态半经典隧穿理论(Keldysh 和分子轨道 Ammosov-Delone-Krainov)的预测与更详细的强场电离计算进行了比较,这些计算考虑了(i)出射连续电子波包与剩余束缚电子之间的库仑相互作用,以及(ii)在电离过程中导致电子连续态变形的电子-核相互作用。我们的结果突出了在强场中,伴随着高强度超快激光脉冲的电子重排效应对电离的重要性,其中出射连续电子可以在母离子中引起电子跃迁。对于激发的尿嘧啶分子的计算和测量表明,在强场条件下,Keldysh 加权 Dyson 范数预测对于分子阳离子的不同态的电离已经失效。

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