Real-time observation of a correlation-driven sub 3 fs charge migration in ionised adenine
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- Autor/in:
- Erscheinungsjahr:
- 2021
- Medientyp:
- Text
- Schlagworte:
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- Configuration Interaction
- Quantum Control
- Ring Currents
- Harmonic Generations
- Ultrashort Pulses
- Laser Pulses
- Configuration Interaction
- Quantum Control
- Ring Currents
- Harmonic Generations
- Ultrashort Pulses
- Laser Pulses
- Beschreibung:
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Sudden ionisation of a relatively large molecule can initiate a correlation-driven process dubbed charge migration, where the electron density distribution is expected to rapidly move along the molecular backbone. Capturing this few-femtosecond or attosecond charge redistribution would represent the real-time observation of electron correlation in a molecule with the enticing prospect of following the energy flow from a single excited electron to the other coupled electrons in the system. Here, we report a time-resolved study of the correlation-driven charge migration process occurring in the nucleic-acid base adenine after ionisation with a 15–35 eV attosecond pulse. We find that the production of intact doubly charged adenine – via a shortly-delayed laser-induced second ionisation event – represents the signature of a charge inflation mechanism resulting from many-body excitation. This conclusion is supported by first-principles time-dependent simulations. These findings may contribute to the control of molecular reactivity at the electronic, few-femtosecond time scale.
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- Lizenz:
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- info:eu-repo/semantics/openAccess
- Quellsystem:
- Forschungsinformationssystem der UHH
Interne Metadaten
- Quelldatensatz
- oai:www.edit.fis.uni-hamburg.de:publications/ac759783-835b-46a8-9867-371a1e9988f4