International audienceSpontaneous pattern formation in living systems is driven by reaction-diffusion chemistry and active mechanics. The feedback between chemical and mechanical forces is often essential to robust pattern formation, yet it remains poorly understood in general. In this analytical and numerical paper, we study an experimentally-motivated minimal model of coupling between reaction-diffusion and active matter: a propagating front of an autocatalytic and stress-generating species. In the absence of activity, the front is described by the the well-studied KPP equation. We find that front propagation is maintained even in active systems, with crucial differences: an extensile stress increases the front speed beyond a critical mag...
We introduce a new model to describe diffusion processes within active deformable media. Our general...
Convective instabilities of an autocatalytic propagating chemical front in a porous medium are studi...
We study a one-dimensional reaction-diffusion system describing an isothermal autocatalytic chemical...
Active self organization of structure is ubiquitous in nature. In a seminal work, Turing proposed a ...
We discuss pattern formation in active fluids in which active stress is regulated by diffusing molec...
We show that pulsatory patterns arise in thin active films in which two chemical species regulate ac...
Surface tension driven convection affects the propagation of chemical reaction fronts in liquids. Th...
Inspired by active shape morphing in developing tissues and biomaterials, we investigate two generic...
The coupling of molecular diffusion and chemical autocatalysis leads to propagating chemical fronts....
Pattern formation through chemical morphogenesis has received a significant amount of attention sinc...
The interplay of reaction and diffusion processes can trigger localized spatiotemporal patterns when...
Pattern interaction has so far been restricted to systems with relatively complex reaction schemes, ...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2019.In advection-rea...
A qualitative mechanism for autowave pattern formation at the reaction front, observed in certain ch...
We consider numerically the front propagation in a three-dimensional, diffusion-controlled $A+B\to...
We introduce a new model to describe diffusion processes within active deformable media. Our general...
Convective instabilities of an autocatalytic propagating chemical front in a porous medium are studi...
We study a one-dimensional reaction-diffusion system describing an isothermal autocatalytic chemical...
Active self organization of structure is ubiquitous in nature. In a seminal work, Turing proposed a ...
We discuss pattern formation in active fluids in which active stress is regulated by diffusing molec...
We show that pulsatory patterns arise in thin active films in which two chemical species regulate ac...
Surface tension driven convection affects the propagation of chemical reaction fronts in liquids. Th...
Inspired by active shape morphing in developing tissues and biomaterials, we investigate two generic...
The coupling of molecular diffusion and chemical autocatalysis leads to propagating chemical fronts....
Pattern formation through chemical morphogenesis has received a significant amount of attention sinc...
The interplay of reaction and diffusion processes can trigger localized spatiotemporal patterns when...
Pattern interaction has so far been restricted to systems with relatively complex reaction schemes, ...
Thesis (Ph. D.)--University of Rochester. Department of Physics and Astronomy, 2019.In advection-rea...
A qualitative mechanism for autowave pattern formation at the reaction front, observed in certain ch...
We consider numerically the front propagation in a three-dimensional, diffusion-controlled $A+B\to...
We introduce a new model to describe diffusion processes within active deformable media. Our general...
Convective instabilities of an autocatalytic propagating chemical front in a porous medium are studi...
We study a one-dimensional reaction-diffusion system describing an isothermal autocatalytic chemical...