A novel wavelength dispersive device with a dispersive element based on staircase-like straight and parallel arrayed waveguides |
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Authors: | Oscar Martí nez Matos,Marí a L. Calvo,Siegfried Janz,José A. Rodrigo,André Delâ ge |
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Affiliation: | a Departamento de Óptica, Facultad de Ciencias Físicas, Universidad Complutense de Madrid, 28040 Madrid, Spain b Institute for Microstructural Sciences, National Research Council of Canada, Ottawa, Canada K1A 0R6 |
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Abstract: | ![]() We propose a new type of arrayed waveguide grating (AWG) multiplexer/demultiplexer based on modified group refractive index. This device is composed by an array of straight and parallel waveguides of equal length and each waveguide consist of two sections with different width. The length of the two sections are changed from a waveguide to the adjacent one following a linear dependence resulting in a wavelength dispersive waveguide array. An example of the device design for silicon-on-insulator (SOI) platform is provided and numerical simulations have been carried out for various arrayed waveguide parameters. We demonstrate that the group index modification can be used for tailoring device dispersion properties, and that it can also result in new dispersion characteristics predicted numerically not observed in conventional AWGs. Additional advantages are that the demultiplexer does not necessarily require bending waveguide sections as in a conventional AWG (de)multiplexers, and thus yields highly compact devices with potentially very low insertion loss. Channel spacing of 1 nm have been predicted for sub-micron waveguides sizes. In this paper it is also proposed a novel wavefront converter based on waveguide array lens-like element with waveguides broadened sections. Numerical results for different input/output geometries are analized. |
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Keywords: | Optical waveguides Silicon-on-insulator technology Wavelength division multiplexing |
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