Published in Nature Scientific Report; 4 figures ABSTRACT: Loss of coherence with increasing excitation amplitudes and spatial size modulation is a fundamental problem in designing Raman fiber lasers. While it is known that ramping up laser pump power increases the amplitude of stochastic excitations, such higher energy inputs can also lead to a transition from a linearly stable coherent laminar regime to a non-desirable disordered turbulent state. This report presents a new statistical methodology, based on first passage statistics, that classifies lasing regimes in Raman fiber lasers, thereby leading to a fast and highly accurate identification of a strong instability leading to a laminar-turbulent phase transition through a self-cons...
We report experimental results demonstrating the variation of optical signal-to-noise ratio (OSNR) o...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
We analyse the nonlinear stage of modulation instability in passively mode locked fiber lasers, lead...
Loss of coherence with increasing excitation amplitudes and spatial size modulation is a fundamental...
Fibre lasers have been shown to manifest a laminar-to-turbulent transition when increasing its pump ...
Studying the transition from a linearly stable coherent laminar state to a highly disordered state o...
Many natural systems display transitions among different dynamical regimes, which are difficult to i...
We study optical wave turbulence using as a particular example recently created ultralong-fiber lase...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
Various physical structures exhibit a fundamentally probabilistic nature over diverse scales in spa...
We analyse the nonlinear stage of modulation instability in passively mode locked fiber lasers leadi...
Fiber lasers operating via Raman gain or based on rare-earthdoped active fibers are widely used as ...
We study numerically optical turbulence using the particular example of a recently created, ultra-lo...
We report experimental results demonstrating the variation of optical signal-to-noise ratio (OSNR) o...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
We analyse the nonlinear stage of modulation instability in passively mode locked fiber lasers, lead...
Loss of coherence with increasing excitation amplitudes and spatial size modulation is a fundamental...
Fibre lasers have been shown to manifest a laminar-to-turbulent transition when increasing its pump ...
Studying the transition from a linearly stable coherent laminar state to a highly disordered state o...
Many natural systems display transitions among different dynamical regimes, which are difficult to i...
We study optical wave turbulence using as a particular example recently created ultralong-fiber lase...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
Various physical structures exhibit a fundamentally probabilistic nature over diverse scales in spa...
We analyse the nonlinear stage of modulation instability in passively mode locked fiber lasers leadi...
Fiber lasers operating via Raman gain or based on rare-earthdoped active fibers are widely used as ...
We study numerically optical turbulence using the particular example of a recently created, ultra-lo...
We report experimental results demonstrating the variation of optical signal-to-noise ratio (OSNR) o...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
We analyse the nonlinear stage of modulation instability in passively mode locked fiber lasers, lead...