Publication | Open Access
Attosecond-Recollision-Controlled Selective Fragmentation of Polyatomic Molecules
153
Citations
24
References
2012
Year
EngineeringPolyatomic MoleculesPhysicsLaser PhotochemistryNatural SciencesVarious Fragmentation ReactionsRelativistic Laser-matter InteractionLaser-plasma InteractionPhysical ChemistrySingle MoleculeQuantum ChemistryChemistryElectronic Excited StateMolecular FragmentationBiophysicsBiomolecular EngineeringOptical Waveform
Control over various fragmentation reactions of a series of polyatomic molecules (acetylene, ethylene, 1,3-butadiene) by the optical waveform of intense few-cycle laser pulses is demonstrated experimentally. We show both experimentally and theoretically that the responsible mechanism is inelastic ionization from inner-valence molecular orbitals by recolliding electron wave packets, whose recollision energy in few-cycle ionizing laser pulses strongly depends on the optical waveform. Our work demonstrates an efficient and selective way of predetermining fragmentation and isomerization reactions in polyatomic molecules on subfemtosecond time scales.
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