Literature DB >> 29041329

Silicon-organic hybrid (SOH) modulators for intensity-modulation / direct-detection links with line rates of up to 120 Gbit/s.

Heiner Zwickel, Stefan Wolf, Clemens Kieninger, Yasar Kutuvantavida, Matthias Lauermann, Timothy de Keulenaer, Arno Vyncke, Renato Vaernewyck, Jingdong Luo, Alex K-Y Jen, Wolfgang Freude, Johan Bauwelinck, Sebastian Randel, Christian Koos.   

Abstract

High-speed interconnects in data-center and campus-area networks crucially rely on efficient and technically simple transmission techniques that use intensity modulation and direct detection (IM/DD) to bridge distances of up to a few kilometers. This requires electro-optic modulators that combine low operation voltages with large modulation bandwidth and that can be operated at high symbol rates using integrated drive circuits. Here we explore the potential of silicon-organic hybrid (SOH) Mach-Zehnder modulators (MZM) for generating high-speed IM/DD signals at line rates of up to 120 Gbit/s. Using a SiGe BiCMOS signal-conditioning chip, we demonstrate that intensity-modulated duobinary (IDB) signaling allows to efficiently use the electrical bandwidth, thereby enabling line rates of up to 100 Gbit/s at bit error ratios (BER) of 8.5 × 10-5. This is the highest data rate achieved so far using a silicon-based MZM in combination with a dedicated signal-conditioning integrated circuit (IC). We further show four-level pulse-amplitude modulation (PAM4) at lines rates of up to 120 Gbit/s (BER = 3.2 × 10-3) using a high-speed arbitrary-waveform generator and a 0.5 mm long MZM. This is the highest data rate hitherto achieved with a sub-millimeter MZM on the silicon photonic platform.

Entities:  

Year:  2017        PMID: 29041329     DOI: 10.1364/OE.25.023784

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  2 in total

1.  Hybrid multi-chip assembly of optical communication engines by in situ 3D nano-lithography.

Authors:  Matthias Blaicher; Muhammad Rodlin Billah; Juned Kemal; Tobias Hoose; Pablo Marin-Palomo; Andreas Hofmann; Yasar Kutuvantavida; Clemens Kieninger; Philipp-Immanuel Dietrich; Matthias Lauermann; Stefan Wolf; Ute Troppenz; Martin Moehrle; Florian Merget; Sebastian Skacel; Jeremy Witzens; Sebastian Randel; Wolfgang Freude; Christian Koos
Journal:  Light Sci Appl       Date:  2020-04-27       Impact factor: 17.782

2.  Silicon-Organic Hybrid (SOH) Mach-Zehnder Modulators for 100 Gbit/s on-off Keying.

Authors:  Stefan Wolf; Heiner Zwickel; Wladislaw Hartmann; Matthias Lauermann; Yasar Kutuvantavida; Clemens Kieninger; Lars Altenhain; Rolf Schmid; Jingdong Luo; Alex K-Y Jen; Sebastian Randel; Wolfgang Freude; Christian Koos
Journal:  Sci Rep       Date:  2018-04-03       Impact factor: 4.379

  2 in total

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