Optical microcavity billiards are a paradigm of a mesoscopic model system for quantum chaos. We demonstrate the action and origin of ray-wave correspondence in real and phase space using far-field emission characteristics and Husimi functions. Whereas universality induced by the invariant-measure dominated far-field emission is known to be a feature shaping the properties of many lasing optical microcavities, the situation changes in the presence of sources that we discuss here. We investigate the source-induced dynamics and the resulting limits of universality while we find ray-picture results to remain a useful tool in order to understand the wave behaviour of optical microcavities with sources. We demonstrate the source-induced dynamics ...
One of the central paradigms for classical and quantum chaos in conservative systems is the two-dime...
Artículo de publicación ISIExtreme events such as rogue waves in optics and fluids are often associa...
We investigate experimentally and theoretically the lasing behavior of dielectric microcavity lasers...
Quantum chaos research deals with connections between a wave system and its classical counterpart wi...
We introduce and investigate billiard systems with an adjusted ray dynamics that accounts for modifi...
We study the dielectric annular billiard as a quantum chaotic model of a micro-optical resonator. It...
The generic “billiard problem ” is a paradigm of nonlinear mathematical physics, which connects to d...
Utilizing quantum chaos, a broadband and efficient coupling scheme has been demonstrated between a f...
By numerical simulations and experiments of fully chaotic billiard lasers, we show that single-mode ...
Light emission from a dielectric cavity with a stadium shape is studied in both ray and wave models....
25 figures, 16 pages longWe present a description of the non-equilibrium properties of a microcavity...
International audienceWe experimentally investigate spatio-temporal lasing dynamics in semiconductor...
Dielectric optical micro-resonators and micro-lasers represent a realization of a wave-chaotic syste...
We present a numerical study of the high-quality modes in two-dimensional dielectric stadium microca...
Abstract Optical microcavities play a significant role in the study of classical and quantum chaos. ...
One of the central paradigms for classical and quantum chaos in conservative systems is the two-dime...
Artículo de publicación ISIExtreme events such as rogue waves in optics and fluids are often associa...
We investigate experimentally and theoretically the lasing behavior of dielectric microcavity lasers...
Quantum chaos research deals with connections between a wave system and its classical counterpart wi...
We introduce and investigate billiard systems with an adjusted ray dynamics that accounts for modifi...
We study the dielectric annular billiard as a quantum chaotic model of a micro-optical resonator. It...
The generic “billiard problem ” is a paradigm of nonlinear mathematical physics, which connects to d...
Utilizing quantum chaos, a broadband and efficient coupling scheme has been demonstrated between a f...
By numerical simulations and experiments of fully chaotic billiard lasers, we show that single-mode ...
Light emission from a dielectric cavity with a stadium shape is studied in both ray and wave models....
25 figures, 16 pages longWe present a description of the non-equilibrium properties of a microcavity...
International audienceWe experimentally investigate spatio-temporal lasing dynamics in semiconductor...
Dielectric optical micro-resonators and micro-lasers represent a realization of a wave-chaotic syste...
We present a numerical study of the high-quality modes in two-dimensional dielectric stadium microca...
Abstract Optical microcavities play a significant role in the study of classical and quantum chaos. ...
One of the central paradigms for classical and quantum chaos in conservative systems is the two-dime...
Artículo de publicación ISIExtreme events such as rogue waves in optics and fluids are often associa...
We investigate experimentally and theoretically the lasing behavior of dielectric microcavity lasers...