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Rabi oscillations in a stretching molecule

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摘要 Rabi oscillation is an elementary laser-driven physical process in atoms and artificial atoms from solid-state systems,while it is rarely demonstrated in molecules.Here,we investigate the bond-length-dependent Rabi oscillations with varying Rabi frequencies in strong-laser-field dissociation of H2+.The coupling of the bond stretching and Rabi oscillations makes the nuclei gain different kinetic energies while the electron is alternatively absorbing and emitting photons.The resulting proton kinetic energy spectra show rich structures beyond the prediction of the Floquet theorem and the well-accepted resonant one-photon dissociation pathway.Our study shows that the laser-driven Rabi oscillations accompanied by nuclear motions are essential to understanding the bond-breaking mechanism and provide a time-resolved perspective to manipulate rich dynamics of the strong-laser-field dissociation of molecules.
出处 《Light(Science & Applications)》 SCIE EI CAS CSCD 2023年第2期239-247,共9页 光(科学与应用)(英文版)
基金 This work was supported by the National Key R&D Program of China(Grants Nos.2018YFA0306303 and 2018YFA0404802) the National Natural Science Fund(Grants Nos.11834004,11925405,12241407,12227807 and 91850203) Innovation Program of Shanghai Municipal Education Commission(Grant No.2017-01-07-00-02-E00034) S.P.acknowledges the support from the Academic Innovation Ability Enhancement Program for Excellent Doctoral Students of East China Normal University in 2021(Grant No.40600-30302-515100/141).
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