Very low phase noise optical links: experiments and theory
Additive phase noise is studied in directly modulated optical links (1.55 /spl mu/m DFB laser and PIN photodiode). Upconversion close to the microwave carrier, of the very low frequency noise of the laser, is calculated and verified experimentally. Noise sources are identified and included in the mo...
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Published in | 1999 IEEE MTT-S International Microwave Symposium Digest (Cat. No.99CH36282) Vol. 4; pp. 1809 - 1812 vol.4 |
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Main Authors | , , , |
Format | Conference Proceeding Journal Article |
Language | English |
Published |
IEEE
1999
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Subjects | |
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Abstract | Additive phase noise is studied in directly modulated optical links (1.55 /spl mu/m DFB laser and PIN photodiode). Upconversion close to the microwave carrier, of the very low frequency noise of the laser, is calculated and verified experimentally. Noise sources are identified and included in the model to evaluate the microwave phase noise and then the noise to signal ratio in terms of phase fluctuations. Good agreement is obtained between calculations and measurements. Very good additive phase noise values have been obtained at 10 kHz offset: -148 dBc/Hz and -139 dBc/Hz at 3 GHz and 9 GHz respectively. |
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AbstractList | Additive phase noise is studied in directly modulated optical links (1.55 mu m DFB laser and PIN photodiode). Upconversion close to the microwave carrier, of the very low frequency noise of the laser, is calculated and verified experimentally. Noise sources are identified and included into the model to evaluate the microwave phase noise and then the noise to signal ratio in terms of phase fluctuations. Good agreement is obtained between calculations and measurements. Very good additive phase noise values have been obtained at 10 kHz offset: -148 dBc/Hz and -139 dBc/Hz at 3 GHz and 9 GHz respectively. Additive phase noise is studied in directly modulated optical links (1.55 /spl mu/m DFB laser and PIN photodiode). Upconversion close to the microwave carrier, of the very low frequency noise of the laser, is calculated and verified experimentally. Noise sources are identified and included in the model to evaluate the microwave phase noise and then the noise to signal ratio in terms of phase fluctuations. Good agreement is obtained between calculations and measurements. Very good additive phase noise values have been obtained at 10 kHz offset: -148 dBc/Hz and -139 dBc/Hz at 3 GHz and 9 GHz respectively. |
Author | Bibey, M.-B. Krakowski, M. Mongardien, D. Deborgies, F. |
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Snippet | Additive phase noise is studied in directly modulated optical links (1.55 /spl mu/m DFB laser and PIN photodiode). Upconversion close to the microwave carrier,... Additive phase noise is studied in directly modulated optical links (1.55 mu m DFB laser and PIN photodiode). Upconversion close to the microwave carrier, of... |
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StartPage | 1809 |
SubjectTerms | Additive noise Laser modes Laser noise Laser theory Low-frequency noise Masers Optical fiber communication Optical noise Phase noise Signal to noise ratio |
Title | Very low phase noise optical links: experiments and theory |
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