Many natural systems display transitions among different dynamical regimes, which are difficult to identify when the data are noisy and high dimensional. A technologically relevant example is a fiber laser, which can display complex dynamical behaviors that involve nonlinear interactions of millions of cavity modes. Here we study the laminar-turbulence transition that occurs when the laser pump power is increased. By applying various data analysis tools to empirical intensity time series we characterize their persistence and demonstrate that at the transition temporal correlations can be precisely represented by a surprisingly simple model.Peer Reviewe
Stochastically driven nonlinear processes are responsible for spontaneous pattern formation and inst...
Studying the transition from a linearly stable coherent laminar state to a highly disordered state o...
Semiconductor lasers with time-delayed optical feedback display a wide range of dynamical regimes, w...
Many natural systems display transitions among different dynamical regimes, which are difficult to i...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
Fibre lasers have been shown to manifest a laminar-to-turbulent transition when increasing its pump ...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
Loss of coherence with increasing excitation amplitudes and spatial size modulation is a fundamental...
Published in Nature Scientific Report; 4 figures ABSTRACT: Loss of coherence with increasing exc...
In fluid turbulence, intermittency is the emergence of non-Gaussian tails in the distribution of vel...
We analyse the nonlinear stage of modulation instability in passively mode locked fiber lasers leadi...
Various physical structures exhibit a fundamentally probabilistic nature over diverse scales in spa...
Physical systems with co-existence and interplay of processes featuring distinct spatio-temporal sca...
We present recent results on measurements of intensity spatio-temporal dynamics in passively mode-lo...
We propose an equation to calculate the intensity correlation function of a dye-laser model with a p...
Stochastically driven nonlinear processes are responsible for spontaneous pattern formation and inst...
Studying the transition from a linearly stable coherent laminar state to a highly disordered state o...
Semiconductor lasers with time-delayed optical feedback display a wide range of dynamical regimes, w...
Many natural systems display transitions among different dynamical regimes, which are difficult to i...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
Fibre lasers have been shown to manifest a laminar-to-turbulent transition when increasing its pump ...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
Loss of coherence with increasing excitation amplitudes and spatial size modulation is a fundamental...
Published in Nature Scientific Report; 4 figures ABSTRACT: Loss of coherence with increasing exc...
In fluid turbulence, intermittency is the emergence of non-Gaussian tails in the distribution of vel...
We analyse the nonlinear stage of modulation instability in passively mode locked fiber lasers leadi...
Various physical structures exhibit a fundamentally probabilistic nature over diverse scales in spa...
Physical systems with co-existence and interplay of processes featuring distinct spatio-temporal sca...
We present recent results on measurements of intensity spatio-temporal dynamics in passively mode-lo...
We propose an equation to calculate the intensity correlation function of a dye-laser model with a p...
Stochastically driven nonlinear processes are responsible for spontaneous pattern formation and inst...
Studying the transition from a linearly stable coherent laminar state to a highly disordered state o...
Semiconductor lasers with time-delayed optical feedback display a wide range of dynamical regimes, w...