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Distributed Raman Amplification Design for Fibre Nonlinearity Compensation with Mid-Link Optical Phase Conjugation., , , , и . ICTON, стр. 1-4. IEEE, (2019)Unrepeatered 64QAM over SMF-28 using Raman Amplification and Digital Backpropagation, , , , , , , , , и 1 other автор(ы). Asia Communications and Photonics Conference, стр. Su4B.3. Optical Society of America, (2017)122.6 Tb/s S+C+L Band Unrepeated Transmission over 223 km link with Optimised Bidirectional Raman Amplification., , , , , , , , , и 4 other автор(ы). OFC, стр. 1-3. IEEE, (2024)Experimental validation of the closed-form GN model accounting for distributed Raman amplification in an S+C+L-band hybrid amplified long-haul transmission system., , , , , , , , , и 3 other автор(ы). CoRR, (2024)Exceeding the nonlinear-shannon limit using raman laser based amplification and optical phase conjugation., , , , , , , , , и 4 other автор(ы). OFC, стр. 1-3. IEEE, (2014)Experimental demonstration of data-dependent pilot-aided phase noise estimation for CO-OFDM., , , , , , , , , и . OFC, стр. 1-3. IEEE, (2014)Enhanced Long-haul Transmission Using Forward Propagated Broadband First Order Raman Pump., , и . ECOC, стр. 1-3. IEEE, (2017)Bandwidth Extension in a Mid-Link Optical Phase Conjugation., , и . Sensors, 22 (17): 6385 (2022)Extended reach of 116 Gb/s DP-QPSK transmission using random DFB fiber laser based raman amplification and bidirectional second-order pumping., , , и . OFC, стр. 1-3. IEEE, (2015)50 Gbaud QPSK E-band Transmission Using Bismuth Doped Fiber Amplifiers., , , , , , , , , и . OFC, стр. 1-3. IEEE, (2022)