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Enhanced fragmentation of water dications upon high Rydberg states

  • Jiaqi Zhou
  • , Lu Wu
  • , Xintai Hao
  • , Xiaorui Xue
  • , Qingrui Zeng
  • , Qibo Ma
  • , Yongtao Zhao
  • , Xiaokai Li
  • , Lanhai He
  • , Sizuo Luo
  • , Chuncheng Wang
  • , Dajun Ding
  • , Xueguang Ren
  • School of Physics
  • Jilin University

Research output: Contribution to journalArticlepeer-review

Abstract

The ionization and fragmentation of water are fundamental processes across numerous scientific and technological fields, yet the relaxation pathways of water dications-particularly the rare D+ + O+ + D channel-remain poorly understood. Here, we report enhanced fragmentation pathways within this channel induced by electron-impact. Using multi-particle coincidence momentum spectroscopy supported by electron-capture-mediated molecular dissociation calculations, we identify a Rydberg state-controlled fragmentation mechanism and resolve its ultrafast relaxation dynamics. Furthermore, we demonstrate that this mechanism also occurs in ammonia and strong-field ionization experiments. In the laser-induced processes, electron-recollision with the cation leads to additional ionization plus excitation into dicationic Rydberg states on a sub-cycle (~2 fs) timescale, effectively freezing nuclear motion. Our findings reveal a general molecular fragmentation pathway governed by high Rydberg states, providing a molecular clock to probe electron-nuclear coupling and offering new insights into water radiolysis.

Original languageEnglish
Article number7524
JournalNature Communications
Volume17
Issue number1
DOIs
StatePublished - Dec 2026
Externally publishedYes

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