Optical transmission of narrow-band millimeter-wave signals by resonant modulation of monolithic semiconductor lasers

We demonstrate the use of monolithic semiconductor lasers as efficient narrow-band (20-300 MHz) millimeter-wave optical transmitters at a cavity round-trip resonant frequency of 45 GHz. The modulation efficiency within the passband is >10 dB above that of a conventional laser diode at frequencies...

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Veröffentlicht in:IEEE photonics technology letters 1994-04, Vol.6 (4), p.568-570
Hauptverfasser: Georges, J.B., Meng-Hsiung Kiang, Heppell, K., Sayed, M., Lan, K.Y.
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Sprache:eng
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Zusammenfassung:We demonstrate the use of monolithic semiconductor lasers as efficient narrow-band (20-300 MHz) millimeter-wave optical transmitters at a cavity round-trip resonant frequency of 45 GHz. The modulation efficiency within the passband is >10 dB above that of a conventional laser diode at frequencies below relaxation oscillation. At an input RF drive power of 10 dBm, a carrier-to-noise ratio of 90 dB (1 Hz) is achieved. We also present a system demonstration of this technique in which 50 Mb/s digital data is transmitted at a 45 GHz subcarrier over optical fiber. This is the highest subcarrier frequency transmission reported to date.< >
ISSN:1041-1135
1941-0174
DOI:10.1109/68.281829