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High-performance coherent optical modulators based on thin-film lithium niobate platform.


ABSTRACT: The coherent transmission technology using digital signal processing and advanced modulation formats, is bringing networks closer to the theoretical capacity limit of optical fibres, the Shannon limit. The in-phase/quadrature electro-optic modulator that encodes information on both the amplitude and the phase of light, is one of the underpinning devices for the coherent transmission technology. Ideally, such modulator should feature a low loss, low drive voltage, large bandwidth, low chirp and compact footprint. However, these requirements have been only met on separate occasions. Here, we demonstrate integrated thin-film lithium niobate in-phase/quadrature modulators that fulfil these requirements simultaneously. The presented devices exhibit greatly improved overall performance (half-wave voltage, bandwidth and optical loss) over traditional lithium niobate counterparts, and support modulation data rate up to 320 Gbit s-1. Our devices pave new routes for future high-speed, energy-efficient, and cost-effective communication networks.

SUBMITTER: Xu M 

PROVIDER: S-EPMC7411015 | biostudies-literature | 2020 Aug

REPOSITORIES: biostudies-literature

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High-performance coherent optical modulators based on thin-film lithium niobate platform.

Xu Mengyue M   He Mingbo M   Zhang Hongguang H   Jian Jian J   Pan Ying Y   Liu Xiaoyue X   Chen Lifeng L   Meng Xiangyu X   Chen Hui H   Li Zhaohui Z   Xiao Xi X   Yu Shaohua S   Yu Siyuan S   Cai Xinlun X  

Nature communications 20200806 1


The coherent transmission technology using digital signal processing and advanced modulation formats, is bringing networks closer to the theoretical capacity limit of optical fibres, the Shannon limit. The in-phase/quadrature electro-optic modulator that encodes information on both the amplitude and the phase of light, is one of the underpinning devices for the coherent transmission technology. Ideally, such modulator should feature a low loss, low drive voltage, large bandwidth, low chirp and c  ...[more]

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