Discrimination of resonant and nonresonant contributions to the nonlinear refractive index of rare earth doped materials (2005)
- Authors:
- USP affiliated authors: NUNES, LUIZ ANTONIO DE OLIVEIRA - IFSC ; CATUNDA, TOMAZ - IFSC
- Unidade: IFSC
- Subjects: LASER; VIDRO
- Language: Inglês
- Imprenta:
- Source:
- Título: Advance Programme
- Conference titles: Internacional Conference on Photonics in Europe - CLEO EUROPE
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ABNT
LIMA, S. M. e NUNES, Luiz Antônio de Oliveira e CATUNDA, Tomaz. Discrimination of resonant and nonresonant contributions to the nonlinear refractive index of rare earth doped materials. 2005, Anais.. Munich: Instituto de Física de São Carlos, Universidade de São Paulo, 2005. . Acesso em: 02 dez. 2025. -
APA
Lima, S. M., Nunes, L. A. de O., & Catunda, T. (2005). Discrimination of resonant and nonresonant contributions to the nonlinear refractive index of rare earth doped materials. In Advance Programme. Munich: Instituto de Física de São Carlos, Universidade de São Paulo. -
NLM
Lima SM, Nunes LA de O, Catunda T. Discrimination of resonant and nonresonant contributions to the nonlinear refractive index of rare earth doped materials. Advance Programme. 2005 ;[citado 2025 dez. 02 ] -
Vancouver
Lima SM, Nunes LA de O, Catunda T. Discrimination of resonant and nonresonant contributions to the nonlinear refractive index of rare earth doped materials. Advance Programme. 2005 ;[citado 2025 dez. 02 ] - Nonlinear refraction spectroscopy in resanance with narrow laser lines in solids
- Nonlinear refractive spectroscopy in resonance with laser lines in solids
- Thermal lens measurements of energy transfer upconvertion 'Nd POT.3+' doped solids
- Eletroscopio de alta sensibilidade
- Mechanisms of optical losses in Tb3+ doped low silica calcium aluminosilicate glasses
- Higher-order nonlinearity of Tb3+ doped glasses
- Fluorescence saturation and cross relaxation in Tb3+ doped LSCAS glasses
- Upconversion effect on fluorescence quantum efficiency and heat generation in 'Nd IND.3+' -doped materials
- Excited state absorption and energy transfer losses in PLZT:'Nd POT. 3+' highly transparent ceramics
- Effect of concentration quenching in highly doped Nd: PLZT transparent ceramics
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