Fractals, complex shapes with structure at multiple scales, have long been observed in Nature: as symmetric fractals in plants and sea shells, and as statistical fractals in clouds, mountains and coastlines. With their highly polished spherical mirrors, laser resonators are almost the precise opposite of Nature, and so it came as a surprise when, in 1998, transverse intensity cross-sections of the eigenmodes of unstable canonical resonators were predicted to be fractals [Karman et al., Nature 402, 138 (1999)]. Experimental verification has so far remained elusive. Here we observe a variety of fractal shapes in transverse intensity cross-sections through the lowest-loss eigenmodes of unstable canonical laser resonators, thereby demonstrating...
Codes were written to simulate the propagation of monochromatic light through a bare optical resonat...
Abstract- Pattern emergence in Nature’s complex systems is mostly attributed to a classic Turing ins...
For large Fresnel numbers N, unstable laser modes are highly irregular and resemble fractals. To exp...
Fractals, complex shapes with structure at multiple scales, have long been observed in Nature: as sy...
A series of significant new extensions concerning fractal light generation are reported. Firstly, we...
Unstable canonical resonators can possess eigenmodes with a fractal intensity structure [Karman et a...
Mathematical self-similar fractals manifest identical replicated patterns at every scale. Recently, ...
We present the first detailed account of kaleidoscope laser modes where the equivalent Fresnel numbe...
Pattern emergence in Naturepsilas complex systems is mostly attributed to a classic Turing instabili...
Complexity draws on commonality of universal phenomena and brings together research in fields that a...
Nature furnishes us with a wide variety of patterns that, fundamentally, tend to fall into one of tw...
One of the simplest optical systems, consisting of two mirrors facing each other to form a resonator...
We will report on our latest research into modelling fractal lasers (linear systems that involve geo...
We report on our latest research in the field of spontaneous spatial fractal patterns. New analyses,...
The complex character of transverse eigenmodes in one-dimensional (1D) unstable cavity lasers has be...
Codes were written to simulate the propagation of monochromatic light through a bare optical resonat...
Abstract- Pattern emergence in Nature’s complex systems is mostly attributed to a classic Turing ins...
For large Fresnel numbers N, unstable laser modes are highly irregular and resemble fractals. To exp...
Fractals, complex shapes with structure at multiple scales, have long been observed in Nature: as sy...
A series of significant new extensions concerning fractal light generation are reported. Firstly, we...
Unstable canonical resonators can possess eigenmodes with a fractal intensity structure [Karman et a...
Mathematical self-similar fractals manifest identical replicated patterns at every scale. Recently, ...
We present the first detailed account of kaleidoscope laser modes where the equivalent Fresnel numbe...
Pattern emergence in Naturepsilas complex systems is mostly attributed to a classic Turing instabili...
Complexity draws on commonality of universal phenomena and brings together research in fields that a...
Nature furnishes us with a wide variety of patterns that, fundamentally, tend to fall into one of tw...
One of the simplest optical systems, consisting of two mirrors facing each other to form a resonator...
We will report on our latest research into modelling fractal lasers (linear systems that involve geo...
We report on our latest research in the field of spontaneous spatial fractal patterns. New analyses,...
The complex character of transverse eigenmodes in one-dimensional (1D) unstable cavity lasers has be...
Codes were written to simulate the propagation of monochromatic light through a bare optical resonat...
Abstract- Pattern emergence in Nature’s complex systems is mostly attributed to a classic Turing ins...
For large Fresnel numbers N, unstable laser modes are highly irregular and resemble fractals. To exp...