Optical spectra of plasmon–exciton core–shell nanoparticles: an anisotropic classical model eliminates discrepancies in experiments
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Publisher
Shanghai Institute of Optics and Fine Mechanics
Link
https://www.researching.cn/ArticlePdf/m00005/2024/22/9/093602.pdf
Reference42 articles.
1. Exciton-plasmon coupling interactions: from principle to applications;W. Lin;Nanophotonics,2018
2. Light-emitting plexciton: exploiting plasmon–exciton interaction in the intermediate coupling regime;D. Zheng;ACS Nano,2018
3. Manipulating coherent plasmon–exciton interaction in a single silver nanorod on monolayer WSe2;Q. Deng;Nano Lett.,2017
4. Room-temperature strong light–matter interaction with active control in single plasmonic nanorod coupled with two-dimensional atomic crystals;H. Wang;Nano Lett.,2017
5. Plasmonic–molecular resonance coupling: plasmonic splitting versus energy transfer;H. Chen;J. Phys. Chem. C,2012
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