Colloids immersed in a critical binary liquid mixture are subject to critical Casimir forces (CCFs) because they confine its concentration fluctuations and influence the latter via effective surface fields. To date, CCFs have been primarily studied in thermodynamic equilibrium. However, due to the critical slowing down, the order parameter around a particle can easily be perturbed by any motion of the colloid or by solvent flow. This leads to significant but largely unexplored changes in the CCF. Here we study the drag force on a single colloidal particle moving in a near-critical fluid mixture and the relative motion of two colloids due to the CCF acting on them. In order to account for the kinetic couplings among the order parameter field...
In soft condensed matter physics, effective interactions often emerge due to the spatial confinement...
Here we study the interplay between the van der Waals (vdWF) and critical Casimir forces (CCF), as w...
We experimentally demonstrate that critical Casimir forces in colloidal systems can be continuously ...
We investigate the behavior of colloidal particles immersed in a binary liquid mixture of water and ...
If a fluctuating medium is confined, the ensuing perturbation of its fluctuation spectrum generates ...
Critical Casimir forces can play an important role for applications in nano-science and nano-technol...
We present an experimental and theoretical study of the phase behavior of a binary mixture of colloi...
From experimental studies, it is well known that colloidal particles suspended in a near-critical bi...
<p>Critical Casimir forces attract increasing interest due to their opportunities for reversible par...
From experimental studies, it is well known that colloidal particles suspended in a near-critical bi...
The critical Casimir effect provides a thermodynamic analogue of the well-known quantum mechanical C...
Colloids immersed in a critical or near-critical binary liquid mixture and close to a chemically pat...
In soft condensed matter physics, effective interactions often emerge due to the spatial confinement...
Here we study the interplay between the van der Waals (vdWF) and critical Casimir forces (CCF), as w...
We experimentally demonstrate that critical Casimir forces in colloidal systems can be continuously ...
We investigate the behavior of colloidal particles immersed in a binary liquid mixture of water and ...
If a fluctuating medium is confined, the ensuing perturbation of its fluctuation spectrum generates ...
Critical Casimir forces can play an important role for applications in nano-science and nano-technol...
We present an experimental and theoretical study of the phase behavior of a binary mixture of colloi...
From experimental studies, it is well known that colloidal particles suspended in a near-critical bi...
<p>Critical Casimir forces attract increasing interest due to their opportunities for reversible par...
From experimental studies, it is well known that colloidal particles suspended in a near-critical bi...
The critical Casimir effect provides a thermodynamic analogue of the well-known quantum mechanical C...
Colloids immersed in a critical or near-critical binary liquid mixture and close to a chemically pat...
In soft condensed matter physics, effective interactions often emerge due to the spatial confinement...
Here we study the interplay between the van der Waals (vdWF) and critical Casimir forces (CCF), as w...
We experimentally demonstrate that critical Casimir forces in colloidal systems can be continuously ...