Observation and Characterization of the Vestige of the Jamming Transition in a Thermal 3D System
arXiv:1206.6802 · doi:10.1103/PhysRevE.87.012303
Abstract
We study the dependence of the pair-correlation function, , and particle mobility on packing fraction in a dense three-dimensional packing of soft colloids made of poly N-isopropyl acrylamide (pNIPAM), a thermo-sensitive gel. We find that for our samples is qualitatively like that of a liquid at all packing fractions. There is a peak in , the height of the first peak of , as a function of packing fraction. This peak is identified as the thermal remnant of the T=0 divergence found at the jamming transition in simulations of soft frictionless spheres at zero-temperature. Near where there is a peak in the particles become arrested on the time scale of the experiment.
8 pages, 8 figures
References in corpus (8)
- Jamming at Zero Temperature and Zero Applied Stress: the Epitome of Disorder
- Confocal microscopy of colloidal particles: towards reliable, optimum coordinates
- The role of attractive forces in viscous liquids
- A critical test of the mode-coupling theory of the glass transition
- Short and long range correlated motion observed in colloidal glasses and liquids
- Dynamics and structure of an aging binary colloidal glass
- Centrifugal compression of soft particle packings - theory and experiment
- Direct-space investigation of the ultraslow ballistic dynamics of a soft glass
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- Casimir effect between pinned particles in two-dimensional jammed systems