All-fibre heterogeneously-integrated frequency comb generation using silicon core fibre

Author:

Sohanpal RonitORCID,Ren Haonan,Shen LiORCID,Deakin CallumORCID,Heidt Alexander M.,Hawkins Thomas W.,Ballato JohnORCID,Gibson Ursula J.,Peacock Anna C.ORCID,Liu ZhixinORCID

Abstract

AbstractOriginally developed for metrology, optical frequency combs are becoming increasingly pervasive in a wider range of research topics including optical communications, spectroscopy, and radio or microwave signal processing. However, application demands in these fields can be more challenging as they require compact sources with a high tolerance to temperature variations that are capable of delivering flat comb spectra, high power per tone, narrow linewidth and high optical signal-to-noise ratio. This work reports the generation of a flat, high power frequency comb in the telecom band using a 17 mm fully-integrated silicon core fibre as a parametric mixer. Our all-fibre, cavity-free source combines the material benefits of planar waveguide structures with the advantageous properties of fibre platforms to achieve a 30 nm bandwidth comb source containing 143 tones with <3 kHz linewidth, 12 dB flatness, and >30 dB OSNR over the entire spectral region.

Funder

RCUK | Engineering and Physical Sciences Research Council

National Science Foundation of China | National Natural Science Foundation of China-Yunnan Joint Fund

Swiss National Science Foundation | National Center of Competence in Research Affective Sciences - Emotions in Individual Behaviour and Social Processes

Norges Forskningsråd

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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