Discretely Tunable Laser Based on Filtered Feedback for Telecommunication Applications
A novel discretely tunable laser based on filtered feedback is presented. The semiconductor device consists of a Fabry-Perot laser with deeply etched broadband distributed Bragg reflector mirrors. Single-mode operation is achieved by using feedback from an integrated filter. This filter contains an...
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Published in | IEEE journal of selected topics in quantum electronics Vol. 16; no. 5; pp. 1405 - 1412 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.09.2010
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
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Abstract | A novel discretely tunable laser based on filtered feedback is presented. The semiconductor device consists of a Fabry-Perot laser with deeply etched broadband distributed Bragg reflector mirrors. Single-mode operation is achieved by using feedback from an integrated filter. This filter contains an arrayed waveguide grating wavelength router and a semiconductor optical amplifier gate array. Design, simulation, and the first characterization results of this new integrated filtered-feedback tunable laser device are presented. It shows a combination of a simple and robust switching algorithm with good wavelength stability. A rate equation model predicts that a properly designed device can switch within 1 ns. The fast switching and reduced control complexity makes the device very promising for various advanced applications in optical telecommunication networks. |
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AbstractList | A novel discretely tunable laser based on filtered feedback is presented. The semiconductor device consists of a Fabry--Perot laser with deeply etched broadband distributed Bragg reflector mirrors. Single-mode operation is achieved by using feedback from an integrated filter. This filter contains an arrayed waveguide grating wavelength router and a semiconductor optical amplifier gate array. Design, simulation, and the first characterization results of this new integrated filtered-feedback tunable laser device are presented. It shows a combination of a simple and robust switching algorithm with good wavelength stability. A rate equation model predicts that a properly designed device can switch within 1 ns. The fast switching and reduced control complexity makes the device very promising for various advanced applications in optical telecommunication networks. |
Author | Pozo, Jose Ermakov, Ilya V Danckaert, Jan Beri, Stefano Smit, Meint K Karouta, Fouad Docter, Boudewijn |
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References | ref13 broeke (ref15) 2001 docter (ref17) 2008 ref20 wesstrm (ref12) 2004 ref11 ref22 ref10 ref2 binsma (ref14) 2001 ref1 docter (ref4) 2008 ref16 ref19 ref18 matsuo (ref5) 0 moeyersoon (ref21) 2002 (ref8) 2002 ref9 ref3 ref6 la porta (ref7) 2008 |
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Snippet | A novel discretely tunable laser based on filtered feedback is presented. The semiconductor device consists of a Fabry-Perot laser with deeply etched broadband... A novel discretely tunable laser based on filtered feedback is presented. The semiconductor device consists of a Fabry--Perot laser with deeply etched... |
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SubjectTerms | Arrayed waveguide gratings Distributed feedback devices Filtered feedback Laser feedback Optical arrays Optical feedback Optical filters packet switching photonic integrated circuits Semiconductor laser arrays semiconductor lasers Telecommunication switching Tunable circuits and devices tunable lasers Waveguide lasers |
Title | Discretely Tunable Laser Based on Filtered Feedback for Telecommunication Applications |
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