A monolithic bipolar CMOS electronic-plasmonic high-speed transmitter

被引:114
作者
Koch, Ueli [1 ]
Uhl, Christopher [2 ]
Hettrich, Horst [3 ]
Fedoryshyn, Yuriy [1 ]
Hoessbacher, Claudia [1 ,4 ]
Heni, Wolfgang [1 ,4 ]
Baeuerle, Benedikt [1 ,4 ]
Bitachon, Bertold, I [1 ]
Josten, Arne [1 ]
Ayata, Masafumi [1 ]
Xu, Huajun [5 ]
Elder, Delwin L. [5 ]
Dalton, Larry R. [5 ]
Mentovich, Elad [6 ]
Bakopoulos, Paraskevas [6 ]
Lischke, Stefan [7 ]
Krueger, Andreas [7 ]
Zimmermann, Lars [7 ,8 ]
Tsiokos, Dimitris [9 ]
Pleros, Nikos [9 ]
Moeller, Michael [2 ,3 ]
Leuthold, Juerg [1 ]
机构
[1] Swiss Fed Inst Technol, Inst Electromagnet Fields, Zurich, Switzerland
[2] Saarland Univ, Chair Elect & Circuits, Saarbrucken, Germany
[3] MICRAM Microelect GmbH, Bochum, Germany
[4] Polariton Technol Ltd, Zurich, Switzerland
[5] Univ Washington, Dept Chem, Seattle, WA 98195 USA
[6] Mellanox Technol Ltd, Yokneam, Israel
[7] IHP Leibniz Inst Innovat Mikroelekt, Frankfurt, Oder, Germany
[8] Tech Univ Berlin, Berlin, Germany
[9] Aristotle Univ Thessaloniki, Ctr Interdisciplinary Res & Innovat, Thessaloniki, Greece
关键词
GHZ BANDWIDTH; MODULATOR; PHOTONICS; DESIGN; VOLTAGE;
D O I
10.1038/s41928-020-0417-9
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
To address the challenge of increasing data rates, next-generation optical communication networks will require the co-integration of electronics and photonics. Heterogeneous integration of these technologies has shown promise, but will eventually become bandwidth-limited. Faster monolithic approaches will therefore be needed, but monolithic approaches using complementary metal-oxide-semiconductor (CMOS) electronics and silicon photonics are typically limited by their underlying electronic or photonic technologies. Here, we report a monolithically integrated electro-optical transmitter that can achieve symbol rates beyond 100 GBd. Our approach combines advanced bipolar CMOS with silicon plasmonics, and addresses key challenges in monolithic integration through co-design of the electronic and plasmonic layers, including thermal design, packaging and a nonlinear organic electro-optic material. To illustrate the potential of our technology, we develop two modulator concepts-an ultra-compact plasmonic modulator and a silicon-plasmonic modulator with photonic routing-both directly processed onto the bipolar CMOS electronics. The monolithic integration of electronic and plasmonic technologies can be used to create electro-optic transmitters capable of symbol rates beyond 100 GBd.
引用
收藏
页码:338 / +
页数:13
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