We present a new mechanism through which chemical oscillations and waves can be induced in batch conditions with a simple A+B→C reaction in the absence of any nonlinear chemical feedback or external trigger. Two reactants A and B, initially separated in space, react upon diffusive contact and the product actively fuels in situ convective Marangoni flows by locally increasing the surface tension at the mixing interface. These flows combine in turn with the reaction-diffusion dynamics, inducing damped spatiotemporal oscillations of the chemical concentrations and the velocity field. By means of numerical simulations, we single out the detailed mechanism and minimal conditions for the onset of this periodic behavior. We show how the antagonist...
Bistable chemical fronts can be deformed by Marangoni-driven convective flows induced by gradients o...
We consider the effects of convection on chemical waves in which density gradients result from the e...
Motivated by the existence of complex behaviors arising from interactions between chemistry and flui...
This work describes a new mechanism for the emergence of oscillatory dynamics driven by the interact...
The interplay of reaction and diffusion processes can trigger localized spatiotemporal patterns when...
The nonlinear dynamics of A + B → C fronts is analyzed both numerically and theoretically in the pre...
PACS. 47.70.Fw – Chemically reactive flows. PACS. 47.70.-n – Reactive, radiative, or nonequilibrium ...
Surface-tension gradients, which can exist across autocatalytic chemical fronts propagating in thin ...
Localized oscillations can develop thanks to the interplay of reaction and diffusion processes when ...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Hydrodynamic instabilities at the interface between two partially miscible liquids impact numerous a...
Chemical reactions can interplay with hydrodynamic flows to generate various complex phenomena. Beca...
A density fingering hydrodynamic instability is triggered by a chemical reaction at the interface be...
Exothermic autocatalytic fronts traveling in the gravity field can be deformed by buoyancy-driven co...
We present a theory for the transition to convection for flat chemical wave fronts propagating upwa...
Bistable chemical fronts can be deformed by Marangoni-driven convective flows induced by gradients o...
We consider the effects of convection on chemical waves in which density gradients result from the e...
Motivated by the existence of complex behaviors arising from interactions between chemistry and flui...
This work describes a new mechanism for the emergence of oscillatory dynamics driven by the interact...
The interplay of reaction and diffusion processes can trigger localized spatiotemporal patterns when...
The nonlinear dynamics of A + B → C fronts is analyzed both numerically and theoretically in the pre...
PACS. 47.70.Fw – Chemically reactive flows. PACS. 47.70.-n – Reactive, radiative, or nonequilibrium ...
Surface-tension gradients, which can exist across autocatalytic chemical fronts propagating in thin ...
Localized oscillations can develop thanks to the interplay of reaction and diffusion processes when ...
Chaos is ubiquitous in Nature and represents one of the most fascinating expressions of real world c...
Hydrodynamic instabilities at the interface between two partially miscible liquids impact numerous a...
Chemical reactions can interplay with hydrodynamic flows to generate various complex phenomena. Beca...
A density fingering hydrodynamic instability is triggered by a chemical reaction at the interface be...
Exothermic autocatalytic fronts traveling in the gravity field can be deformed by buoyancy-driven co...
We present a theory for the transition to convection for flat chemical wave fronts propagating upwa...
Bistable chemical fronts can be deformed by Marangoni-driven convective flows induced by gradients o...
We consider the effects of convection on chemical waves in which density gradients result from the e...
Motivated by the existence of complex behaviors arising from interactions between chemistry and flui...