In this work we propose a NLSE-based model of power and spectral properties of the random distributed feedback (DFB) fiber laser. The model is based on coupled set of non-linear Schrödinger equations for pump and Stokes waves with the distributed feedback due to Rayleigh scattering. The model considers random backscattering via its average strength, i.e. we assume that the feedback is incoherent. In addition, this allows us to speed up simulations sufficiently (up to several orders of magnitude). We found that the model of the incoherent feedback predicts the smooth and narrow (comparing with the gain spectral profile) generation spectrum in the random DFB fiber laser. The model allows one to optimize the random laser generation spectrum wi...
We have measured the longitudinal power distribution inside a random distributed feedback Raman fibe...
In this letter, the polarization properties of a random fiber laser operating via Raman gain and ran...
In present paper correlations between different parts of spectrum of a fiber laser with randomly dis...
In this work we propose a NLSE-based model of power and spectral properties of the random distribute...
For the first time we report full numerical NLSE-based modeling of generation properties of random d...
The simplest model for a description of the random distributed feedback (RDFB) Raman fiber laser is ...
Random distributed feedback fibre lasers belong to the class of random lasers, where the feedback is...
The properties of two novel random fibre lasers, in which stimulated Brillouin scattering supplies t...
A 72 km open-ended symmetrical tunable random distributed feedback fiber laser (RDB-FL) with differe...
We demonstrate a random fiber laser of ultimate efficiency. More than 2 Watts are generated from 0.5...
As shown recently, a long telecommunication fibre may be treated as a natural one-dimensional random...
Frequency and intensity noise are characterized for Erbium-Doped Fiber and Brillouin random lasers b...
Nonlinear interactions between different components of multiwavelength radiation are one of the main...
We have measured the longitudinal power distribution inside a random distributed feedback Raman fibe...
In this letter, the polarization properties of a random fiber laser operating via Raman gain and ran...
In present paper correlations between different parts of spectrum of a fiber laser with randomly dis...
In this work we propose a NLSE-based model of power and spectral properties of the random distribute...
For the first time we report full numerical NLSE-based modeling of generation properties of random d...
The simplest model for a description of the random distributed feedback (RDFB) Raman fiber laser is ...
Random distributed feedback fibre lasers belong to the class of random lasers, where the feedback is...
The properties of two novel random fibre lasers, in which stimulated Brillouin scattering supplies t...
A 72 km open-ended symmetrical tunable random distributed feedback fiber laser (RDB-FL) with differe...
We demonstrate a random fiber laser of ultimate efficiency. More than 2 Watts are generated from 0.5...
As shown recently, a long telecommunication fibre may be treated as a natural one-dimensional random...
Frequency and intensity noise are characterized for Erbium-Doped Fiber and Brillouin random lasers b...
Nonlinear interactions between different components of multiwavelength radiation are one of the main...
We have measured the longitudinal power distribution inside a random distributed feedback Raman fibe...
In this letter, the polarization properties of a random fiber laser operating via Raman gain and ran...
In present paper correlations between different parts of spectrum of a fiber laser with randomly dis...