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dc.contributor.authorSokolovskii, Ilia
dc.contributor.authorGroenhof, Gerrit
dc.date.accessioned2024-01-24T08:13:02Z
dc.date.available2024-01-24T08:13:02Z
dc.date.issued2024
dc.identifier.citationSokolovskii, I., & Groenhof, G. (2024). Photochemical initiation of polariton-mediated exciton propagation. <i>Nanophotonics</i>, <i>Ahead of Print</i>. <a href="https://doi.org/10.1515/nanoph-2023-0684" target="_blank">https://doi.org/10.1515/nanoph-2023-0684</a>
dc.identifier.otherCONVID_201992782
dc.identifier.urihttps://jyx.jyu.fi/handle/123456789/93010
dc.description.abstractPlacing a material inside an optical cavity can enhance transport of excitation energy by hybridizing excitons with confined light modes into polaritons, which have a dispersion that provides these light–matter quasi-particles with low effective masses and very high group velocities. While in experiments, polariton propagation is typically initiated with laser pulses, tuned to be resonant either with the polaritonic branches that are delocalized over many molecules, or with an uncoupled higher-energy electronic excited state that is localized on a single molecule, practical implementations of polariton-mediated exciton transport into devices would require operation under low-intensity incoherent light conditions. Here, we propose to initiate polaritonic exciton transport with a photo-acid, which upon absorption of a photon in a spectral range not strongly reflected by the cavity mirrors, undergoes ultra-fast excited-state proton transfer into a red-shifted excited-state photo-product that can couple collectively with a large number of suitable dye molecules to the modes of the cavity. By means of atomistic molecular dynamics simulations we demonstrate that cascading energy from a photo-excited donor into the strongly coupled acceptor-cavity states via a photo-chemical reaction can indeed induce long-range polariton-mediated exciton transport.en
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherDe Gruyter
dc.relation.ispartofseriesNanophotonics
dc.rightsCC BY 4.0
dc.subject.otherstrong light-matter coupling
dc.subject.otherexciton-polariton
dc.subject.otherquantum chemistry
dc.subject.otherquantum optics
dc.subject.othermolecular dynamics
dc.subject.otherexciton transport
dc.titlePhotochemical initiation of polariton-mediated exciton propagation
dc.typearticle
dc.identifier.urnURN:NBN:fi:jyu-202401241500
dc.contributor.laitosKemian laitosfi
dc.contributor.laitosDepartment of Chemistryen
dc.contributor.oppiaineNanoscience Centerfi
dc.contributor.oppiaineFysikaalinen kemiafi
dc.contributor.oppiaineNanoscience Centeren
dc.contributor.oppiainePhysical Chemistryen
dc.type.urihttp://purl.org/eprint/type/JournalArticle
dc.type.coarhttp://purl.org/coar/resource_type/c_2df8fbb1
dc.description.reviewstatuspeerReviewed
dc.relation.issn2192-8606
dc.relation.volumeAhead of Print
dc.type.versionpublishedVersion
dc.rights.copyright© 2024 the Authors
dc.rights.accesslevelopenAccessfi
dc.relation.grantnumber323996
dc.relation.grantnumber332743
dc.subject.ysokvanttikemia
dc.subject.ysomolekyylidynamiikka
dc.subject.ysokvasihiukkaset
dc.subject.ysovalokemia
dc.subject.ysopolaritonit
dc.format.contentfulltext
jyx.subject.urihttp://www.yso.fi/onto/yso/p19301
jyx.subject.urihttp://www.yso.fi/onto/yso/p29332
jyx.subject.urihttp://www.yso.fi/onto/yso/p38699
jyx.subject.urihttp://www.yso.fi/onto/yso/p7201
jyx.subject.urihttp://www.yso.fi/onto/yso/p38894
dc.rights.urlhttps://creativecommons.org/licenses/by/4.0/
dc.relation.doi10.1515/nanoph-2023-0684
dc.relation.funderSuomen Akatemiafi
dc.relation.funderSuomen Akatemiafi
dc.relation.funderResearch Council of Finlanden
dc.relation.funderResearch Council of Finlanden
jyx.fundingprogramAkatemiahanke, SAfi
jyx.fundingprogramAkatemiahanke, SAfi
jyx.fundingprogramAcademy Project, AoFen
jyx.fundingprogramAcademy Project, AoFen
jyx.fundinginformationThis work was supported by the Academy of Finland (DOI: 10.13039/501100002341, Grants 323996 and 332743).
dc.type.okmA1


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