Dielectric particles suspended in a weakly conducting fluid are known to spontaneously start rotating under the action of a sufficiently strong uniform dc electric field due to the Quincke rotation instability. This rotation can be converted into translation when the particles are placed near a surface providing useful model systems for active matter. Using a combination of numerical simulations and theoretical modeling, we demonstrate that it is possible to convert this spontaneous Quincke rotation into spontaneous translation in a plane perpendicular to the electric field in the absence of surfaces by relying on geometrical asymmetry instead
We show that coupling to curvature nontrivially affects collective motion in active systems, leading...
Active materials represent a new class of condensed matter in which motile elements may collectively...
peer reviewedSmall objects floating on a fluid have a tendency to aggregate due to capillary forces....
Dielectric particles suspended in a weakly conducting fluid are known to spontaneously start rotatin...
A suspension of dielectric particles rotating spontaneously when subjected to a DC electric field in...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2020, Tutor: ...
© 2020 American Physical Society. Colloids dispersed in electrolytes and exposed to an electric fiel...
<p>Active matter comprised of many self-driven units exhibit emergent collective behaviors such as p...
Active matter physics has been developed with various types of self-propelled particles, including t...
Des mouvements collectifs dirigés émergent dans des systèmes très variés, depuis les assemblées synt...
The dynamics of dielectric rigid particles and liquid drops suspended in another liquid medium and s...
Insulating particles or drops suspended in carrier liquids may start to rotate with a constant frequ...
Active fluids are ubiquitous in nature, spanning both microscopic and macroscopic length scales. They...
In this thesis, I present numerical simulations that explore the applications of self-propelled part...
Spontaneous collective motion arises in many different systems, from assembly of synthetic shaken gr...
We show that coupling to curvature nontrivially affects collective motion in active systems, leading...
Active materials represent a new class of condensed matter in which motile elements may collectively...
peer reviewedSmall objects floating on a fluid have a tendency to aggregate due to capillary forces....
Dielectric particles suspended in a weakly conducting fluid are known to spontaneously start rotatin...
A suspension of dielectric particles rotating spontaneously when subjected to a DC electric field in...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2020, Tutor: ...
© 2020 American Physical Society. Colloids dispersed in electrolytes and exposed to an electric fiel...
<p>Active matter comprised of many self-driven units exhibit emergent collective behaviors such as p...
Active matter physics has been developed with various types of self-propelled particles, including t...
Des mouvements collectifs dirigés émergent dans des systèmes très variés, depuis les assemblées synt...
The dynamics of dielectric rigid particles and liquid drops suspended in another liquid medium and s...
Insulating particles or drops suspended in carrier liquids may start to rotate with a constant frequ...
Active fluids are ubiquitous in nature, spanning both microscopic and macroscopic length scales. They...
In this thesis, I present numerical simulations that explore the applications of self-propelled part...
Spontaneous collective motion arises in many different systems, from assembly of synthetic shaken gr...
We show that coupling to curvature nontrivially affects collective motion in active systems, leading...
Active materials represent a new class of condensed matter in which motile elements may collectively...
peer reviewedSmall objects floating on a fluid have a tendency to aggregate due to capillary forces....