arXiv · 1008.1919
Glassy Dislocation Dynamics in 2-D Colloidal Dimer Crystals
Abstract
Although glassy relaxation is typically associated with disorder, here we report on a new type of glassy dynamics relating to dislocations within 2-D crystals of colloidal dimers. Previous studies have demonstrated that dislocation motion in dimer crystals is restricted by certain particle orientations. Here, we drag an optically trapped particle through such dimer crystals, creating dislocations. We find a two-stage relaxation response where initially dislocations glide until encountering particles that cage their motion. Subsequent relaxation occurs logarithmically slowly through a second process where dislocations hop between caged configurations. Finally, in simulations of sheared dimer crystals, the dislocation mean squared displacement displays a caging plateau typical of glassy dynamics. Together, these results reveal a novel glassy system within a colloidal crystal.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sharon J. Gerbode, Umang Agarwal, Desmond C. Ong, Chekesha M. Liddell, Fernando Escobedo, Itai Cohen. 2010-08-11. Glassy Dislocation Dynamics in 2-D Colloidal Dimer Crystals. https://doi.org/10.1103/physrevlett.105.078301
Cite the original work for its findings. Save a collection to share your selection of sources.