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Single-source chip-based frequency comb enabling extreme parallel data transmission

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胡皓 cover
胡皓 (Hao Hu) *
F
Francesco Da Ros
M
Minhao Pu
F
Feihong Ye
K
Kasper Ingerslev
E
Edson Porto da Silva
N
Nooruzzaman, Md.
Y
Yoshimichi Amma
Y
Y. Sasaki
T
Takayuki Mizuno
Y
Yutaka Miyamoto
L
Luisa Ottaviano
E
Elizaveta Semenova
P
Pengyu Guan
D
Darko Zibar
M
Michael Galili
K
Kresten Yvind
T
Toshio Morioka
L
Leif Katsuo Oxenløwe
DOI:10.1038/s41566-018-0205-5delete
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Abstract

Abstract

En 中文
The Internet today transmits hundreds of terabits per second, consumes 9% of all electricity worldwide and grows by 20-30% per year(1,2). To support capacity demand, massively parallel communication links are installed, not scaling favourably concerning energy consumption. A single frequency comb source may substitute many parallel lasers and improve system energy-efficiency(3,4). We present a frequency comb realized by a non-resonant aluminium-gallium-arsenide-oninsulator (AlGaAsOI) nanowaveguide with 66% pump-tocomb conversion efficiency, which is significantly higher than state-of-the-art resonant comb sources. This enables unprecedented high data-rate transmission for chip-based sources, demonstrated using a single-mode 30-core fibre. We show that our frequency comb can carry 661 Tbit s(-1) of data, equivalent to more than the total Internet traffic today. The comb is obtained by seeding the AlGaAsOI chip with 10-GHz picosecond pulses at a low pump power (85 mW), and this scheme is robust to temperature changes, is energy efficient and facilitates future integration with on-chip lasers or amplifiers(5,6).
Keywords:
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Journal

Nature Photonics cover
Nature Photonics
IF:
32.9
Papers:
4.3K
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T
technical university of denmark
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2.6W
Papers: 2.8W
Citations: 37
F
fujikura ltd
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146
Papers: 118
Citations: 0