Reduced Equalization Needs of 100 GHz Bandwidth Plasmonic Modulators

As bit rates of optical interconnects increase, a large amount of complicated signal conditioning is needed to compensate for the insufficient bandwidth of current modulators. In this paper, we evaluate the reduced equalization requirements of high-bandwidth plasmonic modulators in short-reach trans...

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Veröffentlicht in:Journal of lightwave technology 2019-05, Vol.37 (9), p.2050-2057
Hauptverfasser: Baeuerle, Benedikt, Heni, Wolfgang, Hoessbacher, Claudia, Fedoryshyn, Yuriy, Josten, Arne, Haffner, Christian, Watanabe, Tatsuhiko, Uhl, Christopher, Hettrich, Horst, Elder, Delwin L., Dalton, Larry R., Moller, Michael, Leuthold, Juerg
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Sprache:eng
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Zusammenfassung:As bit rates of optical interconnects increase, a large amount of complicated signal conditioning is needed to compensate for the insufficient bandwidth of current modulators. In this paper, we evaluate the reduced equalization requirements of high-bandwidth plasmonic modulators in short-reach transmission experiments. It is shown that transmission of 100 Gbit/s non-return-to-zero (NRZ) and 112 Gbit/s pulse-amplitude modulation-4 over 1 km and 2 km distance is possible without any receiver equalization. At higher bit-rates, such as 120 Gbit/s NRZ, data transmission is demonstrated over 500 m with reduced receiver equalization requirements. Transmission up to 200 Gbit/s over 1 km is also shown with more complex receiver equalization. The reduced complexity of the receiver digital signal processing is attributed to a flat frequency response of at least 108 GHz of the plasmonic modulators. All single wavelength transmissions have been performed at 1540 nm in standard single mode fiber.
ISSN:0733-8724
1558-2213
DOI:10.1109/JLT.2019.2897480