Resonant charging of Xe clusters in Helium nanodroplets under intense laser fields
arXiv:1009.4546 · doi:10.1140/epjd/e2011-10536-3
Abstract
We theoretically investigate the impact of multiple plasmon resonances on the charging of Xe clusters embedded in He nanodroplets under intense pump-probe laser excitation. Our molecular dynamics simulations on Xe309He10000 give clear evidence for selective resonance heating in the He shell and the Xe cluster, but no corresponding double hump feature in the final Xe charge spectra is found. Though the presence of the He shell substantially increases the maximum charge states, the pump-probe dynamics of the Xe spectra from embedded system is similar to that of the free species. In strong contrast to that, the predicted electron spectra do show well-separated and pronounced features from highly efficient plasmon assisted electron acceleration for both resonances in the embedded clusters. A detailed analysis of the underlying ionization and recombination dynamics is presented and explains the apparent disaccord between the resonance features in the ion and electron spectra.
revised manuscript
References in corpus (7)
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- Resonant charging of Xe clusters in Helium nanodroplets under intense laser fields
Cited by in corpus (7)
- Photoionizaton of Pure and Doped Helium Nanodroplets
- Dopant induced ignition of helium nanodroplets in intense few-cycle laser pulses
- Evolution of dopant-induced helium nanoplasmas
- Efficiency of Dopant-Induced Ignition of Helium Nanoplasmas
- Resonant charging of Xe clusters in Helium nanodroplets under intense laser fields
- Charging dynamics of dopants in helium nanoplasmas
- Diffraction imaging of light induced dynamics in xenon-doped helium nanodroplets