The problem of low Reynolds number turbulence in active nematic fluids is theoretically addressed. Using numerical simulations, I demonstrate that an incompressible turbulent flow, in two-dimensional active nematics, consists of an ensemble of vortices whose areas are exponentially distributed within a range of scales. Building on this evidence, I construct a mean-field theory of active turbulence by which several measurable quantities, including the spectral densities and the correlation functions, can be analytically calculated. Because of the profound connection between the flow geometry and the topological properties of the nematic director, the theory sheds light on the mechanisms leading to the proliferation of topological defects in ...
Active matter embraces systems that self-organize at different length and time scales, often exhibit...
We perform lattice Boltzmann simulations of an active nematic fluid confined in a two-dimensional ch...
Topological defects play a prominent role in the physics of two-dimensional materials. When driven o...
We describe a numerical investigation of a continuum model of an active nematic, concentrating on th...
We describe a numerical investigation of a continuum model of an active nematic, concentrating on th...
Dense, active systems show active turbulence, a state characterised by flow fields that are chaotic,...
Active turbulence describes a flow regime that is erratic, and yet endowed with a characteristic len...
Active turbulence in dense active systems is characterized by high vorticity on a length scale that ...
We study a continuum model of an extensile active nematic to show that mesoscale turbulence develops...
Living materials at different length scales manifest active nematic features such as orientational o...
We study the dynamics of a tunable 2D active nematic liquid crystal composed of microtubules and kin...
Active nematics contain topological defects that (under sufficient activity) move, create, and annih...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Active nematic fluids confined in narrow channels generate spontaneous flows when the activity is su...
We investigate similarities in the micro-structural dynamics between externally driven and actively ...
Active matter embraces systems that self-organize at different length and time scales, often exhibit...
We perform lattice Boltzmann simulations of an active nematic fluid confined in a two-dimensional ch...
Topological defects play a prominent role in the physics of two-dimensional materials. When driven o...
We describe a numerical investigation of a continuum model of an active nematic, concentrating on th...
We describe a numerical investigation of a continuum model of an active nematic, concentrating on th...
Dense, active systems show active turbulence, a state characterised by flow fields that are chaotic,...
Active turbulence describes a flow regime that is erratic, and yet endowed with a characteristic len...
Active turbulence in dense active systems is characterized by high vorticity on a length scale that ...
We study a continuum model of an extensile active nematic to show that mesoscale turbulence develops...
Living materials at different length scales manifest active nematic features such as orientational o...
We study the dynamics of a tunable 2D active nematic liquid crystal composed of microtubules and kin...
Active nematics contain topological defects that (under sufficient activity) move, create, and annih...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Active nematic fluids confined in narrow channels generate spontaneous flows when the activity is su...
We investigate similarities in the micro-structural dynamics between externally driven and actively ...
Active matter embraces systems that self-organize at different length and time scales, often exhibit...
We perform lattice Boltzmann simulations of an active nematic fluid confined in a two-dimensional ch...
Topological defects play a prominent role in the physics of two-dimensional materials. When driven o...