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Published on: August 6, 2018
Charge Transfer in the Dissociative Single Ionization of an Ar-Kr Dimer
Junyang Ma1, Hao Huang1, Hongcheng Ni1
1East China Normal University, State Key Laboratory of Precision Spectroscopy, Shanghai 200241, China.
Abstract:
We present direct experimental evidence of laser-induced charge transfer in the dissociative single ionization of an Ar-Kr dimer: Ar-Kr+nℏω⟶[over ionization]Ar-Kr^{+}+e^{-}+mℏω⟶[over charge transfer]Ar^{+}-Kr+e^{-}⟶[over dissociation]Ar^{+}+Kr+e^{-}. Coincidence detection of Ar^{+} fragments and photoelectrons generated by a 400 nm femtosecond pulse shows that ionization initially occurs at the Kr site, followed by charge transfer from Ar to Kr^{+} prior to dissociation. Time-resolved kinetic energy release spectra, obtained with a delayed 800 nm probe, exhibit vibrational revivals that map nuclear wave packet motion on the X(1/2) and A_{2}(1/2) states of Ar-Kr^{+}. Relative-phase-controlled two-color fields enable directional control of Ar^{+} emission, with phase-dependent asymmetries reproduced by time-dependent Schrödinger equation simulations, revealing the governing role of wave packet interference in the charge transfer dynamics.
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