The possibility of creating spectral multiplexers/demultiplexers with temperature-independent parameters is considered. The reasons for the temperature shift of the central wavelength of waveguide arrays of multiplexers/demultiplexers, optical filters, Mach-Zehnder interferometers, and others are analyzed. The results of studies of various techniques of wavelength stabilization of integrated-optical spectral devices and the evaluation of the efficiency of each of them are presented. The prospects of using media with a negative temperature coefficient for creation of waveguide devices are shown. © Springer Science+Business Media, Inc. 2005
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We propose and experimentally demonstrate switchable and tunable transmission characteristics of a M...
The possibility of creating spectral multiplexers/demultiplexers with temperature-independent parame...
A thermally tunable 1 × 4 channel optical demultiplexer was designed using an ultra low-loss Si3N4 (...
Configurations, basic characteristics, and the methods for implementation of wavelength-division mul...
A non-symmetric three-port integrated optical Mach-Zehnder interferometer configuration is employed ...
To increase bandwidth and number of channels per fiber for more than one wavelength in the same fibe...
The temperature dependence of the central wavelength of narrow-band filters is a serious problem for...
Temperature characteristics of various channel waveguides fabricated using the sol–gel technology ar...
The manufacturing techniques of fused single-mode multiplexer/demultiplexer with high coefficient of...
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This study aims to evaluate the effectiveness of selected color filter film for demultiplexer constr...
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