Optical data transmission at 44Tb/s and 10 bits/s/Hz over the C-band with standard fibre and a single micro-comb source
Bill Corcoran, Mengxi Tan, Xingyuan Xu, Andreas Boes, Jiayang Wu,, Thach G. Nguyen, Sai T. Chu, Brent E. Little, Roberto Morandotti, Arnan, Mitchell, and David J. Moss

TL;DR
This paper demonstrates a groundbreaking optical data transmission rate of 44Tb/s over standard fibre using a single microcomb source, achieving high spectral efficiency and stable operation without feedback control.
Contribution
It introduces the use of soliton crystal microcombs for ultra-high capacity optical fibre communication, achieving record data rates with a simple, stable, and efficient microcomb source.
Findings
Achieved 44.2 Tb/s data transmission over 75 km of standard fibre.
Spectral efficiency of 10.4 bits/s/Hz with 64 QAM modulation.
Stable operation of soliton crystal microcombs without stabilization.
Abstract
Micro-combs [1 - 4], optical frequency combs generated by integrated micro-cavity resonators, offer the full potential of their bulk counterparts [5,6], but in an integrated footprint. The discovery of temporal soliton states (DKS dissipative Kerr solitons) [4,7-11] as a means of modelocking microcombs has enabled breakthroughs in many fields including spectroscopy [12,13], microwave photonics [14], frequency synthesis [15], optical ranging [16,17], quantum sources [18,19], metrology [20,21] and more. One of their most promising applications has been optical fibre communications where they have enabled massively parallel ultrahigh capacity multiplexed data transmission [22,23]. Here, by using a new and powerful class of microcomb called soliton crystals [11], we achieve unprecedented data transmission over standard optical fibre using a single integrated chip source. We demonstrate a…
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Taxonomy
TopicsAdvanced Fiber Laser Technologies · Photonic and Optical Devices · Photonic Crystal and Fiber Optics
