We propose an equation to calculate the intensity correlation function of a dye-laser model with a pump parameter subject to finite-bandwidth fluctuations. The equation is valid, in the weak-noise limit, for all times. It incorporates novel non-Markovian features. Results are given for the short-time behavior of the correlation function. It exhibits a characteristic initial plateau. Our findings are supported by a numerical simulation of the model
We present measurements of the time evolution of the statistical densities of both amplitude and fie...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
We analyze the dynamics of various kinds of correlations present between two initially entangled ind...
The intensity correlation functions C(t) for the colored-gain-noise model of dye lasers are analyzed...
We consider a single-mode dye laser with colored pump noise and white quantum noise. An analytical a...
A theory is presented to explain the statistical properties of the growth of dye-laser radiation. Re...
We present a quantitative experimental and theoretical study of intensity fluctuations in the emitte...
Many natural systems display transitions among different dynamical regimes, which are difficult to i...
Exact formulas for the effective eigenvalue characterizing the initial decay of intensity correlatio...
We present a detailed experimental characterization of the autocorrelation properties of a delayed f...
We have analysed large data sets consisting of tens of thousands of time series from three Type B la...
Photocount fluctuation problems, treated previously for Gaussian statistics only, or in the limit of...
Although heavy-tailed fluctuations are ubiquitous in complex systems, a good understanding of the me...
<div><p>Although heavy-tailed fluctuations are ubiquitous in complex systems, a good understanding o...
We have studied the quantum-noise properties of a small slow-inversion laser experimentally and theo...
We present measurements of the time evolution of the statistical densities of both amplitude and fie...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
We analyze the dynamics of various kinds of correlations present between two initially entangled ind...
The intensity correlation functions C(t) for the colored-gain-noise model of dye lasers are analyzed...
We consider a single-mode dye laser with colored pump noise and white quantum noise. An analytical a...
A theory is presented to explain the statistical properties of the growth of dye-laser radiation. Re...
We present a quantitative experimental and theoretical study of intensity fluctuations in the emitte...
Many natural systems display transitions among different dynamical regimes, which are difficult to i...
Exact formulas for the effective eigenvalue characterizing the initial decay of intensity correlatio...
We present a detailed experimental characterization of the autocorrelation properties of a delayed f...
We have analysed large data sets consisting of tens of thousands of time series from three Type B la...
Photocount fluctuation problems, treated previously for Gaussian statistics only, or in the limit of...
Although heavy-tailed fluctuations are ubiquitous in complex systems, a good understanding of the me...
<div><p>Although heavy-tailed fluctuations are ubiquitous in complex systems, a good understanding o...
We have studied the quantum-noise properties of a small slow-inversion laser experimentally and theo...
We present measurements of the time evolution of the statistical densities of both amplitude and fie...
We use advanced statistical tools of time-series analysis to characterize the dynamical complexity o...
We analyze the dynamics of various kinds of correlations present between two initially entangled ind...