English

Microresonator solitons for massively parallel coherent optical communications

Pattern Formation and Solitons 2019-01-09 v4 Optics

Abstract

Optical solitons are waveforms that preserve their shape while propagating, relying on a balance of dispersion and nonlinearity. Soliton-based data transmission schemes were investigated in the 1980s, promising to overcome the limitations imposed by dispersion of optical fibers. These approaches, however, were eventually abandoned in favor of wavelength-division multiplexing (WDM) schemes that are easier to implement and offer improved scalability to higher data rates. Here, we show that solitons may experience a comeback in optical communications, this time not as a competitor, but as a key element of massively parallel WDM. Instead of encoding data on the soliton itself, we exploit continuously circulating dissipative Kerr solitons (DKS) in a microresonator. DKS are generated in an integrated silicon nitride microresonator by four-photon interactions mediated by Kerr nonlinearity, leading to low-noise, spectrally smooth and broadband optical frequency combs. In our experiments, we use two interleaved soliton Kerr combs to transmit a data stream of more than 50Tbit/s on a total of 179 individual optical carriers that span the entire telecommunication C and L bands. Equally important, we demonstrate coherent detection of a WDM data stream by using a pair of microresonator Kerr soliton combs - one as a multi-wavelength light source at the transmitter, and another one as a corresponding local oscillator (LO) at the receiver. This approach exploits the scalability advantages of microresonator soliton comb sources for massively parallel optical communications both at the transmitter and receiver side. Taken together, the results prove the significant potential of these sources to replace arrays of continuous-wave lasers in high-speed communications.

Keywords

Cite

@article{arxiv.1610.01484,
  title  = {Microresonator solitons for massively parallel coherent optical communications},
  author = {Pablo Marin-Palomo and Juned N. Kemal and Maxim Karpov and Arne Kordts and Joerg Pfeifle and Martin H. P. Pfeiffer and Philipp Trocha and Stefan Wolf and Victor Brasch and Miles H. Anderson and Ralf Rosenberger and Kovendhan Vijayan and Wolfgang Freude and Tobias J. Kippenberg and Christian Koos},
  journal= {arXiv preprint arXiv:1610.01484},
  year   = {2019}
}

Comments

10 pages, 3 figures

R2 v1 2026-06-22T16:11:44.637Z