The formation of target patterns in oscillatory CO oxidation on Pt(110) is studied using the controlled creation of temperature heterogeneities on the catalyst surface induced by a focused laser beam. Outward and, for the first time, inward traveling target waves are observed as well as target patterns that are spatially confined to the immediate vicinity of the temperature inhomogeneity. The experimental results are compared to theoretical studies of the complex Ginzburg-Landau equation with a nonuniform frequency distribution and to numerical simulations of the Krischer-Eiswirth-Ertl model for the catalytic CO oxidation on Pt(110). Both the complex Ginzburg-Landau equation and the kinetic model need to be extended by a global coupling ter...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
The formation of target patterns in oscillatory CO oxidation on Pt(110) is studied using the control...
The formation of target patterns in oscillatory CO oxidation on Pt(110) is studied using laser-induc...
This thesis investigates the effects localized spatiotemporal perturbations have on a simple reactio...
This thesis investigates the effects localized spatiotemporal perturbations have on a simple reactio...
Chemical turbulence in the oscillatory catalytic CO oxidation on Pt(110) is suppressed by means of f...
Utilizing a focused laser beam manipulated through computer-controlled mirrors, and capable of “writ...
The effect of local periodic forcing on uniformly oscillating CO oxidation on a Pt(110) surface is i...
We study the initiation of pulses and fronts in a two-dimensional catalytic reaction-diffusion syste...
Control of spatiotemporal chaos is achieved in the catalytic oxidation of CO on Pt(110) by localized...
A dynamic model designed to describe bistability and kinetic oscillations of the reaction rate durin...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
The formation of target patterns in oscillatory CO oxidation on Pt(110) is studied using the control...
The formation of target patterns in oscillatory CO oxidation on Pt(110) is studied using laser-induc...
This thesis investigates the effects localized spatiotemporal perturbations have on a simple reactio...
This thesis investigates the effects localized spatiotemporal perturbations have on a simple reactio...
Chemical turbulence in the oscillatory catalytic CO oxidation on Pt(110) is suppressed by means of f...
Utilizing a focused laser beam manipulated through computer-controlled mirrors, and capable of “writ...
The effect of local periodic forcing on uniformly oscillating CO oxidation on a Pt(110) surface is i...
We study the initiation of pulses and fronts in a two-dimensional catalytic reaction-diffusion syste...
Control of spatiotemporal chaos is achieved in the catalytic oxidation of CO on Pt(110) by localized...
A dynamic model designed to describe bistability and kinetic oscillations of the reaction rate durin...
Theoretical studies have thus far been unable to model pattern formation during the reaction in this...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...
Using the photoelectron emission microscope (PEEM) the spatio-temporal pattern formation during the ...