Donatas Zigmantas
Professor
Quantum coherence in photosynthesis for efficient solar-energy conversion
Author
Summary, in English
The crucial step in the conversion of solar to chemical energy in photosynthesis takes place in the reaction centre, where the absorbed excitation energy is converted into a stable charge-separated state by ultrafast electron transfer events. However, the fundamental mechanism responsible for the near-unity quantum efficiency of this process is unknown. Here we elucidate the role of coherence in determining the efficiency of charge separation in the plant photosystem II reaction centre by comprehensively combining experiment (two-dimensional electronic spectroscopy) and theory (Redfield theory). We reveal the presence of electronic coherence between excitons as well as between exciton and charge-transfer states that we argue to be maintained by vibrational modes. Furthermore, we present evidence for the strong correlation between the degree of electronic coherence and efficient and ultrafast charge separation. We propose that this coherent mechanism will inspire the development of new energy technologies.
Department/s
- Chemical Physics
- NanoLund: Centre for Nanoscience
Publishing year
2014
Language
English
Pages
677-683
Publication/Series
Nature Physics
Volume
10
Issue
9
Document type
Journal article
Publisher
Nature Publishing Group
Topic
- Atom and Molecular Physics and Optics
Status
Published
ISBN/ISSN/Other
- ISSN: 1745-2473