The Experts below are selected from a list of 9465 Experts worldwide ranked by ideXlab platform
Yoshiaki Nakano - One of the best experts on this subject based on the ideXlab platform.
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regenerative wavelength conversion using optical flip flop outputs of multimode interference bistable laser diodes
International Conference on Indium Phosphide and Related Materials, 2005Co-Authors: Mitsuru Takenaka, M Raburn, Yoshiaki NakanoAbstract:Regenerative wavelength conversion was obtained using multimode interference bistable laser diodes and cross gain saturation in semiconductor optical amplifiers. A Digital Transfer Function of wavelength conversion was achieved through the optical flip-flop thresholding Function
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regenerative wavelength conversion using interference bistable laser diodes optical flip flop outputs of multimode
2005Co-Authors: Mitsuru Takenaka, Maura Rabum, Yoshiaki NakanoAbstract:Regenerative wavelength conversion was obtained using multimode interference bistable laser diodes and cross gain saturation in semiconductor optical amplifiers. A Digital Transfer Function of wavelength conversion was achieved through the optical flip-flop thresholding Function.
Mitsuru Takenaka - One of the best experts on this subject based on the ideXlab platform.
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regenerative wavelength conversion using optical flip flop outputs of multimode interference bistable laser diodes
International Conference on Indium Phosphide and Related Materials, 2005Co-Authors: Mitsuru Takenaka, M Raburn, Yoshiaki NakanoAbstract:Regenerative wavelength conversion was obtained using multimode interference bistable laser diodes and cross gain saturation in semiconductor optical amplifiers. A Digital Transfer Function of wavelength conversion was achieved through the optical flip-flop thresholding Function
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regenerative wavelength conversion using interference bistable laser diodes optical flip flop outputs of multimode
2005Co-Authors: Mitsuru Takenaka, Maura Rabum, Yoshiaki NakanoAbstract:Regenerative wavelength conversion was obtained using multimode interference bistable laser diodes and cross gain saturation in semiconductor optical amplifiers. A Digital Transfer Function of wavelength conversion was achieved through the optical flip-flop thresholding Function.
Maura Rabum - One of the best experts on this subject based on the ideXlab platform.
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regenerative wavelength conversion using interference bistable laser diodes optical flip flop outputs of multimode
2005Co-Authors: Mitsuru Takenaka, Maura Rabum, Yoshiaki NakanoAbstract:Regenerative wavelength conversion was obtained using multimode interference bistable laser diodes and cross gain saturation in semiconductor optical amplifiers. A Digital Transfer Function of wavelength conversion was achieved through the optical flip-flop thresholding Function.
M Raburn - One of the best experts on this subject based on the ideXlab platform.
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regenerative wavelength conversion using optical flip flop outputs of multimode interference bistable laser diodes
International Conference on Indium Phosphide and Related Materials, 2005Co-Authors: Mitsuru Takenaka, M Raburn, Yoshiaki NakanoAbstract:Regenerative wavelength conversion was obtained using multimode interference bistable laser diodes and cross gain saturation in semiconductor optical amplifiers. A Digital Transfer Function of wavelength conversion was achieved through the optical flip-flop thresholding Function
V Ramachandran - One of the best experts on this subject based on the ideXlab platform.
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properties of a class of third order two parameter variable magnitude 2 d Digital Transfer Function
Midwest Symposium on Circuits and Systems, 1999Co-Authors: Christian Gargour, V RamachandranAbstract:In this paper, stability and other properties of a class of 2-D Digital Transfer Function having a third-degree denominator with two adjustable parameters have been examined. It is shown that these parameters can be varied satisfying stability conditions. All four basic types of 2-D filters, namely low-pass, high-pass, band-pass and band-elimination filters having variable magnitude characteristics can be obtained.