Photonic preprocessor for analog-to-digital-converter using a cavity-less pulse source

A photonic preprocessor for analog to digital conversion is demonstrated and characterized using a cavity-less optical pulse source. The pulse source generates high fidelity pulses at 2 GHz repetition rate with temporal width of 3 ps. Chirped pulses are formed by cascaded amplitude and phase modulat...

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Veröffentlicht in:Optics express 2012-12, Vol.20 (26), p.B419-B427
Hauptverfasser: Wiberg, Andreas O J, Liu, Lan, Tong, Zhi, Myslivets, Evgeny, Ataie, Vahid, Kuo, Bill P-P, Alic, Nikola, Radic, Stojan
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Sprache:eng
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Zusammenfassung:A photonic preprocessor for analog to digital conversion is demonstrated and characterized using a cavity-less optical pulse source. The pulse source generates high fidelity pulses at 2 GHz repetition rate with temporal width of 3 ps. Chirped pulses are formed by cascaded amplitude and phase modulators, and subsequently compressed in dispersion compensating fiber. Sampling operation is performed with a dual-output Mach-Zehnder modulator, where the complimentary output enables a reduction of noise by 3 dB. Phase noise characterization shows that the phase noise of the generated pulses is fully dictated by the RF source. The high quality of the pulse source used in a sampling preprocessor experiment was verified by measuring 8 effective number of bits at 10 GHz and 7.0 effective number of bits at 40 GHz.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.20.00B419