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Breaking the Selection Rules of Spin-Forbidden Molecular Absorption in Plasmonic Nanocavities

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arxiv 2005.05383 v1 pith:JFAEZ3B7 submitted 2020-05-11 physics.optics cond-mat.mes-hallphysics.chem-ph

classification physics.opticscond-mat.mes-hallphysics.chem-ph
keywords absorptionmolecularemissiongoldorganicplasmonicrulesselection
verification ladder T0 review T1 audit T2 compute T3 formal
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Controlling absorption and emission of organic molecules is crucial for efficient light-emitting diodes, organic solar cells and single-molecule spectroscopy. Here, a new molecular absorption is activated inside a gold plasmonic nanocavity, and found to break selection rules via spin-orbit coupling. Photoluminescence excitation scans reveal absorption from a normally spin-forbidden singlet to triplet state transition, while drastically enhancing the emission rate by several thousand fold. The experimental results are supported by density functional theory, revealing the manipulation of molecular absorption by nearby metallic gold atoms.

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