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dc.contributor.authorIrish, E.K.
dc.contributor.authorGómez-Bombarelli, R.
dc.contributor.authorLovett, B.W.
dc.date.accessioned2014-09-17T08:31:01Z
dc.date.available2014-09-17T08:31:01Z
dc.date.issued2014-07-14
dc.identifier149086972
dc.identifieree5a2bfb-6da9-45b7-a00b-ac3f8faa1b27
dc.identifier84904684825
dc.identifier000339443300010
dc.identifier.citationIrish , E K , Gómez-Bombarelli , R & Lovett , B W 2014 , ' Vibration-assisted resonance in photosynthetic excitation-energy transfer ' , Physical Review. A, Atomic, molecular, and optical physics , vol. 90 , no. 1 . https://doi.org/10.1103/PhysRevA.90.012510en
dc.identifier.issn1050-2947
dc.identifier.otherORCID: /0000-0001-5142-9585/work/47136553
dc.identifier.urihttps://hdl.handle.net/10023/5422
dc.descriptionB.W.L. thanks the Royal Society for support from a University Research Fellowship. This work was funded by the Leverhulme Trust.en
dc.description.abstractUnderstanding how the effectiveness of natural photosynthetic energy-harvesting systems arises from the interplay between quantum coherence and environmental noise represents a significant challenge for quantum theory. Recently it has begun to be appreciated that discrete molecular vibrational modes may play an important role in the dynamics of such systems. Here we present a microscopic mechanism by which intramolecular vibrations may be able to contribute to the efficiency and directionality of energy transfer. Excited vibrational states create resonant pathways through the system, supporting fast and efficient energy transport. Vibrational damping together with the natural downhill arrangement of molecular energy levels gives intrinsic directionality to the energy flow. Analytical and numerical results demonstrate a significant enhancement of the efficiency and directionality of energy transport that can be directly related to the existence of resonances between vibrational and excitonic levels.
dc.format.extent10
dc.format.extent1212985
dc.language.isoeng
dc.relation.ispartofPhysical Review. A, Atomic, molecular, and optical physicsen
dc.subjectQC Physicsen
dc.subject.lccQCen
dc.titleVibration-assisted resonance in photosynthetic excitation-energy transferen
dc.typeJournal articleen
dc.contributor.institutionUniversity of St Andrews. School of Physics and Astronomyen
dc.contributor.institutionUniversity of St Andrews. Condensed Matter Physicsen
dc.identifier.doi10.1103/PhysRevA.90.012510
dc.description.statusPeer revieweden


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