A global time–delay feedback scheme is implemented experimentally to control chemical turbulence in the catalytic CO oxidation on a Pt(110) single crystal surface. The reaction is investigated under ultrahigh vacuum conditions by means of photoemission electron microscopy. We present results showing that turbulence can be efficiently suppressed by applying time-delay autosynchronization. Hysteresis effects are found in the transition regime from turbulence to homogeneous oscillations. At optimal delay time, we find a discontinuity in the oscillation period that can be understood in terms of an analytical investigation of a phase equation with time-delay autosynchronization. The experimental results are reproduced in numerical simulations of...
We study the initiation of pulses and fronts in a two-dimensional catalytic reaction–diffusion syste...
Oxidation reaction of CO on a single platinum crystal is a reaction-diffusion system that may exhibi...
Global time-delay autosynchronization is known to control spatiotemporal turbulence in oscillatory r...
A global time–delay feedback scheme is implemented experimentally to control chemical turbulence in ...
Effects of global delayed feedback on diffusion-induced turbulence are studied in a realistic model ...
Experiments with catalytic oxidation of carbon monoxide on Pt(110) show that chemical turbulence in ...
Control of spatiotemporal chaos is one of the central problems of nonlinear dynamics. We report on s...
We consider effects of global delayed feedback on anharmonic oscillations in the reaction-diffusion ...
Spatiotemporal pattern formation in the catalytic CO oxidation on Pt(1 1 0) is controlled by means o...
Selbstorganisation in Systemen fern vom thermodynamischen Gleichgewicht kann zur Ausbildung komplexe...
A new feedback scheme for guided spatiotemporal pattern formation in reaction-diffusion systems is i...
We review experimental and theoretical studies on the design and control of spatiotemporal behavior ...
Chemical turbulence in the oscillatory catalytic CO oxidation on Pt(110) is suppressed by means of f...
Among heterogeneously catalyzed chemical reactions, the CO oxidation on the Pt(110) surface under va...
The elementary steps underlying the mechanism of a catalytic reaction are also responsible for its r...
We study the initiation of pulses and fronts in a two-dimensional catalytic reaction–diffusion syste...
Oxidation reaction of CO on a single platinum crystal is a reaction-diffusion system that may exhibi...
Global time-delay autosynchronization is known to control spatiotemporal turbulence in oscillatory r...
A global time–delay feedback scheme is implemented experimentally to control chemical turbulence in ...
Effects of global delayed feedback on diffusion-induced turbulence are studied in a realistic model ...
Experiments with catalytic oxidation of carbon monoxide on Pt(110) show that chemical turbulence in ...
Control of spatiotemporal chaos is one of the central problems of nonlinear dynamics. We report on s...
We consider effects of global delayed feedback on anharmonic oscillations in the reaction-diffusion ...
Spatiotemporal pattern formation in the catalytic CO oxidation on Pt(1 1 0) is controlled by means o...
Selbstorganisation in Systemen fern vom thermodynamischen Gleichgewicht kann zur Ausbildung komplexe...
A new feedback scheme for guided spatiotemporal pattern formation in reaction-diffusion systems is i...
We review experimental and theoretical studies on the design and control of spatiotemporal behavior ...
Chemical turbulence in the oscillatory catalytic CO oxidation on Pt(110) is suppressed by means of f...
Among heterogeneously catalyzed chemical reactions, the CO oxidation on the Pt(110) surface under va...
The elementary steps underlying the mechanism of a catalytic reaction are also responsible for its r...
We study the initiation of pulses and fronts in a two-dimensional catalytic reaction–diffusion syste...
Oxidation reaction of CO on a single platinum crystal is a reaction-diffusion system that may exhibi...
Global time-delay autosynchronization is known to control spatiotemporal turbulence in oscillatory r...