Random lasers are unique systems where lasing occurs due to repetitive scattering in a disordered nanostructure. Previous descriptions of random lasing are numerous, however a full time-dependent theory that describes the introduction of gain directly from first principles is lacking in the literature. This paper will present an analytic self-consistent time-dependent theory of random lasing that contains the results from the well-known steady-state ab initio laser theory. This theory can also describe a number of temporal phenomena that have been observed in previous experiments and facilitates the incorporation of these devices into their envisioned practical applications
We review our recent work on lasing in active random media. Light scattering, which had been regarde...
The behavior of a newly introduced overlap parameter, measuring the correlation between intensity ...
We report the experimental results obtained with a novel architecture for random lasing, in which th...
Studies of random laser systems are a new direction with promising potential applications and theore...
Random laser systems are studied not only for their interesting physical properties, but also for th...
A random laser is a system formed by a random assembly of elastic scatterers dispersed into an optic...
In the last decade Anderson Localization of Light and Random Lasing has attracted a variety of inter...
International audienceA numerical study is presented of random lasers as a function of the pumping r...
We present a quantitative experimental and theoretical study of intensity fluctuations in the emitte...
Random lasers are the simplest sources of stimulated emission without cavity, with the feedback prov...
We report on a recent model introduced to describe the behaviour of light in a nonlinear active rand...
Restricted Access.Continuing our ongoing investigations of random lasing, we used the Monte Carlo me...
The mode dynamics of a random laser is investigated in experiment and theory. The laser consists of ...
We review our recent work on lasing in active random media. Light scattering, which had been regarde...
Over the past decades extensive research has been carried out to study the lasing characteristics of...
We review our recent work on lasing in active random media. Light scattering, which had been regarde...
The behavior of a newly introduced overlap parameter, measuring the correlation between intensity ...
We report the experimental results obtained with a novel architecture for random lasing, in which th...
Studies of random laser systems are a new direction with promising potential applications and theore...
Random laser systems are studied not only for their interesting physical properties, but also for th...
A random laser is a system formed by a random assembly of elastic scatterers dispersed into an optic...
In the last decade Anderson Localization of Light and Random Lasing has attracted a variety of inter...
International audienceA numerical study is presented of random lasers as a function of the pumping r...
We present a quantitative experimental and theoretical study of intensity fluctuations in the emitte...
Random lasers are the simplest sources of stimulated emission without cavity, with the feedback prov...
We report on a recent model introduced to describe the behaviour of light in a nonlinear active rand...
Restricted Access.Continuing our ongoing investigations of random lasing, we used the Monte Carlo me...
The mode dynamics of a random laser is investigated in experiment and theory. The laser consists of ...
We review our recent work on lasing in active random media. Light scattering, which had been regarde...
Over the past decades extensive research has been carried out to study the lasing characteristics of...
We review our recent work on lasing in active random media. Light scattering, which had been regarde...
The behavior of a newly introduced overlap parameter, measuring the correlation between intensity ...
We report the experimental results obtained with a novel architecture for random lasing, in which th...