Title :
Mode-Multiplexed Transmission Over a 209-km DGD-Compensated Hybrid Few-Mode Fiber Span
Author :
Ryf, R. ; Mestre, M.A. ; Randel, S. ; Schmidt, C. ; Gnauck, A.H. ; Essiambre, R. -J ; Winzer, P.J. ; Delbue, R. ; Pupalaikis, P. ; Sureka, A. ; Sun, Y. ; Jiang, X. ; Peckham, D.W. ; McCurdy, A. ; Lingle, R., Jr.
Author_Institution :
Bell Labs., Alcatel-Lucent, Holmdel, NJ, USA
Abstract :
We transmitted five wavelength channels and six spatial and polarization modes over a 209-km-long hybrid few-mode fiber span. The fiber supports six spatial and polarization modes, and consists of a first section of large effective area depressed-cladding few-mode fiber followed by a graded-index few-mode fiber. The differential group delay is compensated by using fiber spools with differential group delay of opposite sign. Low-loss three-spot mode couplers are used to couple to the few-mode fiber, and backward pumped-distributed Raman amplification is used to overcome the fiber loss. The 40-Gb/s QPSK signals with an aggregate capacity of 1.2 Tb/s are recovered by coherent multiple-input-multiple-output off-line digital signal processing. The impulse response at various span lengths is compared and analyzed in detail.
Keywords :
channel capacity; compensation; delays; gradient index optics; multiplexing; optical fibre amplifiers; optical fibre communication; optical fibre couplers; optical fibre losses; optical fibre polarisation; optical modulation; quadrature phase shift keying; DGD compensation; backward pumped-distributed Raman amplification; bit rate 40 Gbit/s; coherent multiple-input-multiple-output off-line digital signal processing; differential group delay; distance 209 km; fiber loss; graded-index few-mode fiber; hybrid few-mode fiber span; impulse response; large effective area; mode-multiplexed transmission; polarization modes; spatial modes; three-spot mode couplers; wavelength channels; Couplers; Crosstalk; Delay; Digital signal processing; Multiplexing; Optical polarization; Stimulated emission; Optical fiber communication;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2012.2220342