Broadening the 1.53 μm emission bandwidth in Er3+-doped tellurite glasses from plasmonic structures (2024)
- Authors:
- USP affiliated authors: MAREGA JUNIOR, EUCLYDES - IFSC ; CALDERÓN, GASTON LOZANO - IFSC ; RIVERA, VICTOR ANTHONY GARCIA - IFSC
- Unidade: IFSC
- Subjects: VIDRO CERÂMICO; TERRAS RARAS; PROPRIEDADES DOS MATERIAIS; NANOPARTÍCULAS
- Keywords: Plasmoncis; Tellurite glasses; Rare-earth ions
- Agências de fomento:
- Language: Inglês
- Imprenta:
- Publisher: Instituto de Física de São Carlos - IFSC
- Publisher place: São Carlos
- Date published: 2024
- Source:
- Título: Livro de Resumos
- ISSN: 2965-7679
- Conference titles: Semana Integrada do Instituto de Física de São Carlos - SIFSC
-
ABNT
CALDERÓN, Gaston Lozano et al. Broadening the 1.53 μm emission bandwidth in Er3+-doped tellurite glasses from plasmonic structures. 2024, Anais.. São Carlos: Instituto de Física de São Carlos - IFSC, 2024. Disponível em: https://repositorio.usp.br/directbitstream/55ea2fe6-2a58-4bf5-8997-3c088a685fbd/PROD036709_3231916.pdf. Acesso em: 29 dez. 2025. -
APA
Calderón, G. L., Rivera, V. A. G., Messaddeq, Y., & Marega Junior, E. (2024). Broadening the 1.53 μm emission bandwidth in Er3+-doped tellurite glasses from plasmonic structures. In Livro de Resumos. São Carlos: Instituto de Física de São Carlos - IFSC. Recuperado de https://repositorio.usp.br/directbitstream/55ea2fe6-2a58-4bf5-8997-3c088a685fbd/PROD036709_3231916.pdf -
NLM
Calderón GL, Rivera VAG, Messaddeq Y, Marega Junior E. Broadening the 1.53 μm emission bandwidth in Er3+-doped tellurite glasses from plasmonic structures [Internet]. Livro de Resumos. 2024 ;[citado 2025 dez. 29 ] Available from: https://repositorio.usp.br/directbitstream/55ea2fe6-2a58-4bf5-8997-3c088a685fbd/PROD036709_3231916.pdf -
Vancouver
Calderón GL, Rivera VAG, Messaddeq Y, Marega Junior E. Broadening the 1.53 μm emission bandwidth in Er3+-doped tellurite glasses from plasmonic structures [Internet]. Livro de Resumos. 2024 ;[citado 2025 dez. 29 ] Available from: https://repositorio.usp.br/directbitstream/55ea2fe6-2a58-4bf5-8997-3c088a685fbd/PROD036709_3231916.pdf - Unveiling the localized surface plasmon-Er3+ coupling in the near-infrared emission at low temperatures
- Quantum-plasmonic engineering to improve the 1.53 µm radiative emission in Er3+-doped tellurite glasses under controlled temperature
- Tuning of color emission in zinc-tellurite glasses by controlling pump power and Er3+ doping concentration
- Influence of metal oxides on the structural and gammashielding roperties of zinc-tellurite glasses
- Simulation of plasmonic nanostructures for polarization control/selection of the emission of Er3+ in tellurite glasses
- Optical thermometry of tellurite glasses doped with Er3+-Yb3+ under UV and NIR excitation
- Simulation of a nanoplasmonic wave plate based on elliptical bull's eye nanostructure
- Multiple Fano resonance realization in far-field through plasmonic nanostructures using an optical gain medium
- Thermometry and optical study of Er3+-Yb3+ doped tellurite glasses as a suitable candidate for optical fibre
- Tailoring the 1.53 µm Er3+ emission bandwidth via metallic nanorods coupling
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| PROD036709_3231916.pdf | Direct link |
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