Addressing the Dark State Problem in Strongly Coupled Organic Exciton-Polariton Systems Addressing the Dark State Problem in Strongly Coupled Organic Exciton-Polariton Systems Evripidis Michail, Kamyar Rashidi, Bin Liu, Guiying He, Vinod M. Menon, Matthew Y. Sfeir Nano Letters, 2024, 24, 2, 557-565 https://doi.org/10.1021/acs.nanolett.3c02984 Sarah Jane Baker2024-12-04T21:21:51+00:00 Share This Story, Choose Your Platform! FacebookXRedditLinkedInWhatsAppTumblrPinterestVkEmail About the Author: Sarah Jane Baker Related Posts Coupling of Electronic Transitions to Ferroelectric Order in a 2D Semiconductor Coupling of Electronic Transitions to Ferroelectric Order in a 2D Semiconductor Magnon-mediated exciton-exciton interaction in a van der Waals antiferromagnet Magnon-mediated exciton-exciton interaction in a van der Waals antiferromagnet Efficient and Tunable Photochemical Charge Transfer via Long-Lived Bloch Surface Wave Polaritons Efficient and Tunable Photochemical Charge Transfer via Long-Lived Bloch Surface Wave Polaritons Ultrafast Dynamics of Bloch Surface Wave Polaritons in Large‐Area 2D Semiconductor Monolayers at Room Temperature Ultrafast Dynamics of Bloch Surface Wave Polaritons in Large‐Area 2D Semiconductor Monolayers at Room Temperature Activated Singlet Fission Dictated by Anti-Kasha Property in a Rylene Imide Dye Activated Singlet Fission Dictated by Anti-Kasha Property in a Rylene Imide Dye