Detalhes do Documento

SiC multilayer structures as light controlled photonic active fflters

Autor(es): Vieira, Manuel Augusto ; Vieira, Manuela ; Louro, Paula ; Vaz da Silva, V ; Costa, João ; Fantoni, Alessandro

Data: 2013

Identificador Persistente: http://hdl.handle.net/10400.21/2818

Origem: Repositório Científico do Instituto Politécnico de Lisboa

Assunto(s): Optical sensors; Optical filters; Numerical and electrical simulations; Optoelectronic model; Optical sensors; Optical sensors; Optical filters; Optical filters; Numerical and electrical simulations; Numerical and electrical simulations; Optoelectronic model; Optoelectronic model


Descrição

Tunable wavelength division multiplexing converters based on amorphous SiC multilayer photonic active filters are analyzed. The configuration includes two stacked p-i-n structures (p(a-SiC:H)-i'(a-SiC:H)-n(a-SiC:H)-p(a-SiC:H)-i(a-Si:H)-n(a-Si:H)) sandwiched between two transparent contacts. The manipulation of the magnitude is achieved through appropriated front and back backgrounds. Transfer function characteristics are studied both theoretically and experimentally. An algorithm to decode the multiplex signal is established. An optoelectronic model supports the optoelectronic logic architecture. Results show that the light-activated device combines the demultiplexing operation with the simultaneous photodetection and self-amplification of an optical signal. The output waveform presents a nonlinear amplitude-dependent response to the wavelengths of the input channels. Depending on the wavelength of the external background and irradiation side, it acts either as a short- or a long-pass band filter or as a band-stop filter. A two-stage active circuit is presented and gives insight into the physics of the device.

Tipo de Documento Artigo científico
Idioma Inglês
Contribuidor(es) RCIPL
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