Understanding how chiral active particles -- which self-propel and self-rotate -- interact with each other is crucial to uncover how chiral active matter self-organizes into dynamic structures and patterns. Long-range fluctuation-induced (FI) forces in nonequilibrium steady states of active matter systems can be considerably strong and govern structure formation in interplay with other interactions. However, the impact of chirality on FI forces is not understood to date. We study effective forces between intruders immersed in chiral active fluids with tunable chirality and find that the influence of chirality on the FI force nontrivially depends on the elongation of active particles. By increasing the ratio between self-rotation and self-pr...
Author Posting. © The Author(s), 2011. This is the author's version of the work. It is posted here ...
This article summarizes some of the open questions in the field of active matter that have emerged d...
Active colloids self-organise to a variety of collective states, ranging from highly motile "molecul...
Some nonequilibrium systems exhibit anomalous suppression of the large-scale density fluctuations, s...
Chiral active matter comprises particles which can self-propel and self-rotate. Examples range from ...
Chiral active matter is enjoying a rapid increase of interest, spurred by the rich variety of asymme...
We study in this work the 2D dynamics of an experimental system of disk-shaped rotors, fluidized by ...
In equilibrium liquid crystals, chirality leads to a variety of spectacular three-dimensional struct...
We demonstrate that edge currents develop in active chiral matter -- composed of spinning disk-shape...
The success of spectroscopy to characterise equilibrium fluids, for example the heat capacity ratio,...
Biological matter is driven far from thermodynamic equilibrium by active processes on the molecular ...
Active fluids are ubiquitous in nature, spanning both microscopic and macroscopic length scales. They...
Recently, non-reciprocal systems have become a focus of growing interest. Examples occur in soft and...
Using Brownian dynamics (BD) simulations we investigate the self-organization of a monolayer of chir...
We investigate phase separation in a chiral fluid, made of spinning ferromagnetic colloids that inte...
Author Posting. © The Author(s), 2011. This is the author's version of the work. It is posted here ...
This article summarizes some of the open questions in the field of active matter that have emerged d...
Active colloids self-organise to a variety of collective states, ranging from highly motile "molecul...
Some nonequilibrium systems exhibit anomalous suppression of the large-scale density fluctuations, s...
Chiral active matter comprises particles which can self-propel and self-rotate. Examples range from ...
Chiral active matter is enjoying a rapid increase of interest, spurred by the rich variety of asymme...
We study in this work the 2D dynamics of an experimental system of disk-shaped rotors, fluidized by ...
In equilibrium liquid crystals, chirality leads to a variety of spectacular three-dimensional struct...
We demonstrate that edge currents develop in active chiral matter -- composed of spinning disk-shape...
The success of spectroscopy to characterise equilibrium fluids, for example the heat capacity ratio,...
Biological matter is driven far from thermodynamic equilibrium by active processes on the molecular ...
Active fluids are ubiquitous in nature, spanning both microscopic and macroscopic length scales. They...
Recently, non-reciprocal systems have become a focus of growing interest. Examples occur in soft and...
Using Brownian dynamics (BD) simulations we investigate the self-organization of a monolayer of chir...
We investigate phase separation in a chiral fluid, made of spinning ferromagnetic colloids that inte...
Author Posting. © The Author(s), 2011. This is the author's version of the work. It is posted here ...
This article summarizes some of the open questions in the field of active matter that have emerged d...
Active colloids self-organise to a variety of collective states, ranging from highly motile "molecul...