Active matter systems display a fascinating range of dynamical states, including stationary patterns and turbulent phases. While the former can be tackled with methods from the field of pattern formation, the spatiotemporal disorder of the active turbulence phase calls for a statistical description. Borrowing techniques from turbulence theory, we here establish a quantitative description of correlation functions and spectra of a minimal continuum model for active turbulence. Further exploring the parameter space, we also report on a surprising type of turbulence-driven pattern formation far beyond linear onset: the emergence of a dynamic hexagonal vortex lattice state after an extended turbulent transient, which can only be explained taking...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
A number of micro-scale biological flows are characterized by spatio-temporal chaos. These include d...
Dense, active systems show active turbulence, a state characterised by flow fields that are chaotic,...
Living and nonliving active matter, ranging from flocks of birds to active colloids, exhibit a fasci...
The spontaneous formation of heterogeneous patterns is a hallmark of many nonlinear systems, from bi...
Cellular suspensions such as dense bacterial flows exhibit a turbulence-like phase under certain con...
Cellular suspensions such as dense bacterial flows exhibit a turbulence-like phase under certain con...
Turbulent systems exhibit a remarkable multiscale complexity, in which spatial structures induce sca...
Cellular suspensions such as dense bacterial flows exhibit a turbulence-like phase under certain con...
We argue on general grounds that the transition to turbulence in plane Couette flow is best studied...
The character of turbulence depends on where it develops. Turbulence near boundaries, for instance, ...
The relevance of recent developments in nonlinear dynamical systems towards understanding the onset ...
Active turbulence describes a flow regime that is erratic, and yet endowed with a characteristic len...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, 2018.Cataloged fro...
Active matter, composed of self-propelled entities, forms a wide class of out-of-equilibrium systems...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
A number of micro-scale biological flows are characterized by spatio-temporal chaos. These include d...
Dense, active systems show active turbulence, a state characterised by flow fields that are chaotic,...
Living and nonliving active matter, ranging from flocks of birds to active colloids, exhibit a fasci...
The spontaneous formation of heterogeneous patterns is a hallmark of many nonlinear systems, from bi...
Cellular suspensions such as dense bacterial flows exhibit a turbulence-like phase under certain con...
Cellular suspensions such as dense bacterial flows exhibit a turbulence-like phase under certain con...
Turbulent systems exhibit a remarkable multiscale complexity, in which spatial structures induce sca...
Cellular suspensions such as dense bacterial flows exhibit a turbulence-like phase under certain con...
We argue on general grounds that the transition to turbulence in plane Couette flow is best studied...
The character of turbulence depends on where it develops. Turbulence near boundaries, for instance, ...
The relevance of recent developments in nonlinear dynamical systems towards understanding the onset ...
Active turbulence describes a flow regime that is erratic, and yet endowed with a characteristic len...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, 2018.Cataloged fro...
Active matter, composed of self-propelled entities, forms a wide class of out-of-equilibrium systems...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
A number of micro-scale biological flows are characterized by spatio-temporal chaos. These include d...
Dense, active systems show active turbulence, a state characterised by flow fields that are chaotic,...