Synchronization and collective dynamics in a carpet of microfluidic rotors.

Phys Rev Lett 104:17 (2010) 178103

Authors:

Nariya Uchida, Ramin Golestanian

Abstract:

We study synchronization of an array of rotors on a substrate that are coupled by hydrodynamic interaction. Each rotor, which is modeled by an effective rigid body, is driven by an internal torque and exerts an active force on the surrounding fluid. The long-ranged nature of the hydrodynamic interaction between the rotors causes a rich pattern of dynamical behaviors including phase ordering and self-proliferating spiral waves. Our results suggest strategies for designing controllable microfluidic mixers using the emergent behavior of hydrodynamically coupled active components.

Wilson Line Picture of Levin-Wen Partition Functions

(2010)

Authors:

FJ Burnell, Steven H Simon

Using electrowetting to control interface motion in patterned microchannels

(2010)

Authors:

BM Mognetti, JM Yeomans

CUDA simulations of active dumbbell suspensions

(2010)

Authors:

Victor Putz, Jorn Dunkel, Julia M Yeomans

Spin ice under pressure: symmetry enhancement and infinite order multicriticality

ArXiv 1003.4896 (2010)

Authors:

Ludovic DC Jaubert, JT Chalker, Peter CW Holdsworth, R Moessner

Abstract:

We study the low-temperature behaviour of spin ice when uniaxial pressure induces a tetragonal distortion. There is a phase transition between a Coulomb liquid and a fully magnetised phase. Unusually, it combines features of discontinuous and continuous transitions: the order parameter exhibits a jump, but this is accompanied by a divergent susceptibility and vanishing domain wall tension. All these aspects can be understood as a consequence of an emergent SU(2) symmetry at the critical point. We map out a possible experimental realisation.