We present an experimental demonstration of polarization-independent performance in a forward and backward-pumped 2nd-order ultralong cavity Raman laser amplifiers with highly polarized pumps. Our findings show that the depolarization of the Stokes component due to gain saturation leads to polarization-insensitive performance in terms of output gain and relative intensity noise in the signal. These results pave the way for the use of individual highly polarized low-RIN semiconductor laser diodes in Raman-amplified optical communications
The chapter demonstrates a detailed study of Raman fiber laser (RFL)-based amplification techniques ...
Recently, fiber Raman amplifiers have proven to be effective in the all-optical control of the state...
We perform a full numerical characterisation of half-open cavity random DFB Raman fibre laser amplif...
Random distributed feedback fiber Raman lasers, where the feedback mechanism is provided by Rayleigh...
We report on a theoretical study of activated polarization pulling and de-correlation of signal and ...
Random distributed feedback fiber Raman lasers, where the feedback mechanism is provided by Rayleigh...
We report a theoretical study and simulations of a novel fiber-spin tailoring technique to suppress ...
Relative intensity noise transfer from the pump to the signal in 2nd-order ultra-long Raman laser am...
Commercially available Raman fiber pumps display relatively high Relative Intensity Noise (RIN) that...
Optimal design of a Raman-amplified periodic cell depends strongly on the constraints set by overall...
CLEO/Europe-EQEC, Munich, Germany, 25-29 June 2017Relative intensity noise (RIN) transfer from the p...
The paper reviews the basic principles and recent advances of Raman fibre laser (RFL) based amplific...
The chapter demonstrates a detailed study of Raman fiber laser (RFL)-based amplification techniques ...
The Raman gain based polarization pulling process in a copropagating scheme is investigated. We map ...
Among the different possible amplification solutions offered by Raman scattering in optical fibers, ...
The chapter demonstrates a detailed study of Raman fiber laser (RFL)-based amplification techniques ...
Recently, fiber Raman amplifiers have proven to be effective in the all-optical control of the state...
We perform a full numerical characterisation of half-open cavity random DFB Raman fibre laser amplif...
Random distributed feedback fiber Raman lasers, where the feedback mechanism is provided by Rayleigh...
We report on a theoretical study of activated polarization pulling and de-correlation of signal and ...
Random distributed feedback fiber Raman lasers, where the feedback mechanism is provided by Rayleigh...
We report a theoretical study and simulations of a novel fiber-spin tailoring technique to suppress ...
Relative intensity noise transfer from the pump to the signal in 2nd-order ultra-long Raman laser am...
Commercially available Raman fiber pumps display relatively high Relative Intensity Noise (RIN) that...
Optimal design of a Raman-amplified periodic cell depends strongly on the constraints set by overall...
CLEO/Europe-EQEC, Munich, Germany, 25-29 June 2017Relative intensity noise (RIN) transfer from the p...
The paper reviews the basic principles and recent advances of Raman fibre laser (RFL) based amplific...
The chapter demonstrates a detailed study of Raman fiber laser (RFL)-based amplification techniques ...
The Raman gain based polarization pulling process in a copropagating scheme is investigated. We map ...
Among the different possible amplification solutions offered by Raman scattering in optical fibers, ...
The chapter demonstrates a detailed study of Raman fiber laser (RFL)-based amplification techniques ...
Recently, fiber Raman amplifiers have proven to be effective in the all-optical control of the state...
We perform a full numerical characterisation of half-open cavity random DFB Raman fibre laser amplif...