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1.
J Phys Condens Matter ; 25(3): 035901, 2013 Jan 23.
Artigo em Inglês | MEDLINE | ID: mdl-23221332

RESUMO

Upon excitation in thin oxide films by infrared radiation, radiative polaritons are formed with complex angular frequency ω, according to the theory of Kliewer and Fuchs (1966 Phys. Rev. 150 573). We show that radiative polaritons leak radiation with frequency ω(i) to the space surrounding the oxide film. The frequency ω(i) is the imaginary part of ω. The effects of the presence of the radiation leaked out at frequency ω(i) are observed experimentally and numerically in the infrared spectra of La(2)O(3) films on silicon upon excitation by infrared radiation of the 0TH type radiative polariton. The frequency ω(i) is found in the microwave to far infrared region, and depends on the oxide film chemistry and thickness. The presented results might aid in the interpretation of fine structures in infrared and, possibly, optical spectra, and suggest the study of other similar potential sources of electromagnetic radiation in different physical scenarios.


Assuntos
Radiação Eletromagnética , Raios Infravermelhos , Lantânio/química , Óptica e Fotônica , Óxidos/química , Simulação por Computador , Lantânio/efeitos da radiação , Óxidos/efeitos da radiação , Espalhamento de Radiação
2.
Appl Spectrosc ; 66(2): 188-97, 2012 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-22449283

RESUMO

Through simulations, this work explores the effects of conducting, semiconducting, and insulating substrates on the absorption of infrared radiation by radiative polaritons in oxide layers with thicknesses that range from 30 nm to 9 µm. Using atomic layer deposition, oxide layers can be formed in the nanometer scale. Our results suggest that the chemistry and conductivity of the substrate determine the amount of absorption by radiative polaritons in oxide layers thinner than the skin depth. The effects of the chemistry and conductivity of the substrate are especially effective for oxide films thinner than about 250 nm, which we label as the substrate sensitive thickness of the oxide film.

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