English

Supramolecular transmission of soliton-encoded bit streams over astronomical distances

Optics 2018-08-01 v2

Abstract

A stream of optical pulses, transmitted over long distances in optical fiber, will be affected by a variety of noise sources, leading to degradation in the signal-to-noise ratio. This noise accumulation sets generic capacity limits of all fiber-based optical signal transmission systems and has long been regarded as unavoidable. We report that by tailoring long-range, non-covalent inter-pulse interactions, optical solitons in a fiber laser loop can robustly couple to each other and self-assemble into supramolecular structures that exhibit long-term stability, elementary diversity and the possibility of information encoding. We demonstrate error-free transmission of such self-assembled solitonic structures over many astronomical units without any active retiming, opening up the possibility of using bit-bit interactions to overcome noise accumulation in optical fiber telecommunications and bit-storage systems.

Keywords

Cite

@article{arxiv.1710.01034,
  title  = {Supramolecular transmission of soliton-encoded bit streams over astronomical distances},
  author = {W. He and M. Pang and D. H. Yeh and J. Huang and C. R. Menyuk and P. St. J. Russell},
  journal= {arXiv preprint arXiv:1710.01034},
  year   = {2018}
}

Comments

19 pages, 3 figures in main text, 7 figures in supplementary information