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Vibronic origin of long-lived coherence in an artificial molecular light harvester.


ABSTRACT: Natural and artificial light-harvesting processes have recently gained new interest. Signatures of long-lasting coherence in spectroscopic signals of biological systems have been repeatedly observed, albeit their origin is a matter of ongoing debate, as it is unclear how the loss of coherence due to interaction with the noisy environments in such systems is averted. Here we report experimental and theoretical verification of coherent exciton-vibrational (vibronic) coupling as the origin of long-lasting coherence in an artificial light harvester, a molecular J-aggregate. In this macroscopically aligned tubular system, polarization-controlled 2D spectroscopy delivers an uncongested and specific optical response as an ideal foundation for an in-depth theoretical description. We derive analytical expressions that show under which general conditions vibronic coupling leads to prolonged excited-state coherence.

SUBMITTER: Lim J 

PROVIDER: S-EPMC4510969 | biostudies-literature | 2015 Jul

REPOSITORIES: biostudies-literature

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Vibronic origin of long-lived coherence in an artificial molecular light harvester.

Lim James J   Paleček David D   Caycedo-Soler Felipe F   Lincoln Craig N CN   Prior Javier J   von Berlepsch Hans H   Huelga Susana F SF   Plenio Martin B MB   Zigmantas Donatas D   Hauer Jürgen J  

Nature communications 20150709


Natural and artificial light-harvesting processes have recently gained new interest. Signatures of long-lasting coherence in spectroscopic signals of biological systems have been repeatedly observed, albeit their origin is a matter of ongoing debate, as it is unclear how the loss of coherence due to interaction with the noisy environments in such systems is averted. Here we report experimental and theoretical verification of coherent exciton-vibrational (vibronic) coupling as the origin of long-  ...[more]

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