Temporal correlations of sunlight may assist photoprotection in bacterial photosynthesis

Adriana M. De Mendoza, Felipe Caycedo-Soler, Susana F. Huelga, Martin B. Plenio

Producción: Contribución a una revistaArtículorevisión exhaustiva

3 Citas (Scopus)

Resumen

Photosynthetic systems utilize adaptability to respond efficiently to fluctuations in their light environment. As a result, large photosynthetic yields can be achieved in conditions of low light intensity, while photoprotection mechanisms are activated in conditions of elevated light intensity. In sharp contrast with these observations, current theoretical models predict bacterial cell death for physiologically high light intensities. To resolve this discrepancy, we consider a unified framework to describe three stages of photosynthesis in natural conditions, namely light absorption, exciton transfer and charge separation dynamics, to investigate the relationship between the statistical features of thermal light and the Quinol production in bacterial photosynthesis. This approach allows us to identify a mechanism of photoprotection that relies on charge recombination facilitated by the photon bunching statistics characteristic of thermal sunlight. Our results suggest that the flexible design underpinning natural photosynthesis may therefore rely on exploiting the temporal correlations of thermal light, manifested in photo-bunching patterns, which are preserved for excitations reaching the reaction center.

Idioma originalInglés
Número de artículo073042
PublicaciónNew Journal of Physics
Volumen22
N.º7
DOI
EstadoPublicada - jul. 2020
Publicado de forma externa

Huella

Profundice en los temas de investigación de 'Temporal correlations of sunlight may assist photoprotection in bacterial photosynthesis'. En conjunto forman una huella única.

Citar esto