Data transmission through up to 74.8 km of hollow-core fiber with coherent and direct-detect transceivers

An optical transmission loop experiment over hollow-core fiber is demonstrated with 1.25Gb/s OOK, 40G DP-QPSK, 100G DP-QPSK modulation schemes over distances of 31.0 km, 74.8 km, 55.8 km respectively, using two fiber spans with 2.7 km and 3.5 km length.

[2]  Marco N. Petrovich,et al.  Hollow-core photonic bandgap fibers: technology and applications , 2013 .

[3]  Maxim Kuschnerov,et al.  High Capacity Mode-Division Multiplexed Optical Transmission in a Novel 37-cell Hollow-Core Photonic Bandgap Fiber , 2014, Journal of Lightwave Technology.

[4]  Amirhossein Ghazisaeidi,et al.  Optimized spectrally efficient transceiver for 400-Gb/s single carrier transport , 2014, 2014 The European Conference on Optical Communication (ECOC).

[5]  Jing Xu,et al.  Two-mode multiplexing at 2×10.7 Gbps over 7-cell hollow-core photonic band gap fiber , 2011, 2011 37th European Conference and Exhibition on Optical Communication.

[6]  F. Hauske,et al.  DSP for Coherent Single-Carrier Receivers , 2009, Journal of Lightwave Technology.

[7]  A. Stefani,et al.  Five-ring hollow-core photonic crystal fiber with 1.8 dB/km loss. , 2013, Optics letters.

[8]  David J. Richardson,et al.  Demonstration of an 11km hollow core photonic bandgap fiber for broadband low-latency data transmission , 2015, 2015 Optical Fiber Communications Conference and Exhibition (OFC).

[9]  M. Herrmann,et al.  First demonstration of hollow-core fiber for intra data center low latency connectivity with a commercial 100Gb/s interface , 2015, 2015 Optical Fiber Communications Conference and Exhibition (OFC).

[10]  Linli Meng,et al.  Low-loss hollow-core fibers with improved single-modedness. , 2013, Optics express.

[11]  D. J. Richardson,et al.  Volume manufacturing of Hollow Core Photonic Band Fibers: Challenges and opportunities , 2015, 2015 Optical Fiber Communications Conference and Exhibition (OFC).

[12]  Christophe Peucheret,et al.  10 Gbit/s transmission over air-guiding photonic bandgap fibre at 1550 nm , 2005 .

[13]  T. Wilkinson,et al.  Mode multiplexing at 2×20Gbps over 19-cell hollow-core photonic band gap fibre , 2012, OFC/NFOEC.

[14]  Marco N. Petrovich,et al.  30.7 Tb/s (96×320 Gb/s) DP-32QAM transmission over 19-cell Photonic Band Gap Fiber , 2013, 2013 Optical Fiber Communication Conference and Exposition and the National Fiber Optic Engineers Conference (OFC/NFOEC).

[15]  Maxim Kuschnerov,et al.  Differential Phase Frame Synchronization for Coherent Transponders , 2013, IEEE Photonics Technology Letters.

[16]  David J. Richardson,et al.  Towards high-capacity fibre-optic communications at the speed of light in vacuum , 2013, Nature Photonics.