English

High-speed PAM4-based Optical SDM Interconnects with Directly Modulated Long-wavelength VCSEL

Signal Processing 2018-12-14 v1 Networking and Internet Architecture

Abstract

This paper reports the demonstration of high-speed PAM-4 transmission using a 1.5-{\mu}m single-mode vertical cavity surface emitting laser (SM-VCSEL) over multicore fiber with 7 cores over different distances. We have successfully generated up to 70 Gbaud 4-level pulse amplitude modulation (PAM-4) signals with a VCSEL in optical back-to-back, and transmitted 50 Gbaud PAM-4 signals over both 1-km dispersion-uncompensated and 10-km dispersion-compensated in each core, enabling a total data throughput of 700 Gbps over the 7-core fiber. Moreover, 56 Gbaud PAM-4 over 1-km has also been shown, whereby unfortunately not all cores provide the required 3.8 ×\times 10 3^{-3} bit error rate (BER) for the 7% overhead-hard decision forward error correction (7% OH HDFEC). The limited bandwidth of the VCSEL and the adverse chromatic dispersion of the fiber are suppressed with pre-equalization based on accurate end-to-end channel characterizations. With a digital post-equalization, BER performance below the 7% OH-HDFEC limit is achieved over all cores. The demonstrated results show a great potential to realize high-capacity and compact short-reach optical interconnects for data centers.

Keywords

Cite

@article{arxiv.1812.05536,
  title  = {High-speed PAM4-based Optical SDM Interconnects with Directly Modulated Long-wavelength VCSEL},
  author = {Joris Van Kerrebrouck and Xiaodan Pang and Oskars Ozolins and Rui Lin and Aleksejs Udalcovs and Lu Zhang and Haolin Li and Silvia Spiga and Markus-Christian Amann and Lin Gan and Ming Tang and Songnian Fu and Richard Schatz and Gunnar Jacobsen and Sergei Popov and Deming Liu and Weijun Tong and Guy Torfs and Johan Bauwelinck and Jiajia Chen and Xin Yin},
  journal= {arXiv preprint arXiv:1812.05536},
  year   = {2018}
}

Comments

7 pages, accepted to publication in 'Journal of Lightwave Technology (JLT)