We compared numerically and experimentally the transmission behavior of return-to-zero (RZ) and nonreturn-to-zero (NRZ) modulated signals, 10 Gb/s were transmitted over 2040-km standard single-mode fiber using an alternating dispersion compensation scheme in a recirculating loop with 102 km amplifier spacing. Receiver sensitivities of -33 dBm (NRZ) and -35 dBm (RZ) could be achieved. RZ allows for a simple linear dispersion compensation whereas NRZ suffers from nonlinear signal distortion. NRZ requires under-compensation of the linear chromatic dispersion dependent on signal power and transmission length. Therefore, NRZ makes network design more difficult
Unrepeatered 40 Gbit/s RZ single channel transmission over 150 km of standard singlemode fibre at 1....
In the paper, the authors compare efficiency of two physical dispersion compensation methods for sin...
In this paper, the performance of negative dispersion fiber used as a dispersion compensating module...
Abstract — We compare nonreturn-to-zero (NRZ) with return-to-zero (RZ) modulation format for wavelen...
In this paper, dispersion compensating fibers are used to compensate for the positive dispersion acc...
10 Gb/s transmission experiments in a recirculating loop with standard single-mode and dispersion co...
In this paper, we investigate pre-, post- and symmetrical-dispersion compensation methods for 10 Gb/...
A comparison of the NRZ- and RZ-transmission formats is investigated for 1.55µm 40Gbit/s dispersion ...
10 Gbit/s transmission experiments on standard fibre (16 ps/km/nm) and with >100 km amplifier spacin...
Fiber Optics has emerged as a major building block in terrestrial telecommunication industry. Optica...
Dispersion is the most important factor which determines the data rate and the maximum repeater dist...
Nonreturn-to-zero (NRZ)- and return-to-zero (RZ)-transmission formats are investigated for 1.55µm 40...
The best scheme of chromatic dispersion compensation, input powers to standard and dispersion compen...
Ab¬stract – Non-Return-to-Zero (NRZ), Return-to-Zero (RZ) and Dou (duobinary) modulation formats are...
With the recent data rate increase it is very challenging to build a fibre optic network that would ...
Unrepeatered 40 Gbit/s RZ single channel transmission over 150 km of standard singlemode fibre at 1....
In the paper, the authors compare efficiency of two physical dispersion compensation methods for sin...
In this paper, the performance of negative dispersion fiber used as a dispersion compensating module...
Abstract — We compare nonreturn-to-zero (NRZ) with return-to-zero (RZ) modulation format for wavelen...
In this paper, dispersion compensating fibers are used to compensate for the positive dispersion acc...
10 Gb/s transmission experiments in a recirculating loop with standard single-mode and dispersion co...
In this paper, we investigate pre-, post- and symmetrical-dispersion compensation methods for 10 Gb/...
A comparison of the NRZ- and RZ-transmission formats is investigated for 1.55µm 40Gbit/s dispersion ...
10 Gbit/s transmission experiments on standard fibre (16 ps/km/nm) and with >100 km amplifier spacin...
Fiber Optics has emerged as a major building block in terrestrial telecommunication industry. Optica...
Dispersion is the most important factor which determines the data rate and the maximum repeater dist...
Nonreturn-to-zero (NRZ)- and return-to-zero (RZ)-transmission formats are investigated for 1.55µm 40...
The best scheme of chromatic dispersion compensation, input powers to standard and dispersion compen...
Ab¬stract – Non-Return-to-Zero (NRZ), Return-to-Zero (RZ) and Dou (duobinary) modulation formats are...
With the recent data rate increase it is very challenging to build a fibre optic network that would ...
Unrepeatered 40 Gbit/s RZ single channel transmission over 150 km of standard singlemode fibre at 1....
In the paper, the authors compare efficiency of two physical dispersion compensation methods for sin...
In this paper, the performance of negative dispersion fiber used as a dispersion compensating module...