Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/91187

TítuloTunable narrowband excitonic Optical Tamm states enabled by a metal-free all-organic structure
Autor(es)Castillo, Miguel
Cunha, Diogo
Estévez-Varela, Carla
Miranda, Daniel
Pastoriza-Santos, Isabel
Núñez-Sánchez, Sara
Vasilevskiy, Mikhail
Lopez-Garcia, Martin
Palavras-chavej-aggregates
lightweight
molecular excitonic
Optical Tamm states
organic photonics
sustainable photonic
Data2022
EditoraDe Gruyter
RevistaNanophotonics
CitaçãoCastillo, M., Cunha, D., Estévez-Varela, C., Miranda, D., Pastoriza-Santos, I., Núñez-Sánchez, S., … Lopez-Garcia, M. (2022, November 7). Tunable narrowband excitonic Optical Tamm states enabled by a metal-free all-organic structure. Nanophotonics. Walter de Gruyter GmbH. http://doi.org/10.1515/nanoph-2022-0419
Resumo(s)Optical Tamm states (OTS) are confined optical modes that can occur at the interface between two highly reflective structures. However, due to the strong reflectance required, their implementation with highly processable and metal-free flexible materials has proven challenging. Herein, we develop the first structure supporting OTS based only on organic polymeric materials, demonstrating a photonic platform based on non-critical, widely available and easily processable materials. The structures fabricated present large areas and consist of a narrowband multi-layered polymeric distributed Bragg reflector (DBR) followed by a thin film of J-aggregate molecular excitonic material that can act as a highly reflective surface within a narrowband range. We take advantage of the narrowband spectral response of the DBR and of the reflective molecular layer to tune the OTS band by varying the periodicity of the multilayer, opening the door for the fabrication of OTS structures based on lightweight integrable excitonic devices with cost-effective procedures.
TipoArtigo
URIhttps://hdl.handle.net/1822/91187
DOI10.1515/nanoph-2022-0419
ISSN2192-8606
e-ISSN2192-8614
Versão da editorahttps://www.degruyter.com/document/doi/10.1515/nanoph-2022-0419/html
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:PHYSICS OF QUANTUM MATERIALS AND BIONANOSTRUCTURES (2018 - ...)

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