arXiv · 1111.6236
Wavelength dependence of electron localization in the laser-driven dissociation of H$_2^+$
Abstract
We theoretically investigate the laser wavelength dependence of asymmetric dissociation of H$_2^+$. It is found that the electron localization in molecular dissociation is significantly manipulated by varying the wavelength of the driving field. Through creating a strong nuclear vibration in the laser-molecular interaction, our simulations demonstrate that the few-cycle mid-infrared pulse can effectively localize the electron at one of the dissociating nuclei with weak ionization. Moreover, we show that the observed phase-shift of the dissociation asymmetry is attributed to the different population transfers by the remaining fields after the internuclear distances reach the one-photon coupling point.
Explore related subjects
Keep this discovery
Kunlong Liu, Weiyi Hong, Qingbin Zhang, Peixiang Lu. 2011-11-27. Wavelength dependence of electron localization in the laser-driven dissociation of H$_2^+$. https://doi.org/10.1364/oe.19.026359
Cite the original work for its findings. Save a collection to share your selection of sources.