Different routes into the glass state for soft thermo-sensitive colloids.

Rivas-Barbosa, Rodrigo; Lázaro-Lázaro, Edilio; Mendoza-Méndez, Patricia; Still, Tim; Piazza, Valeria; Ramírez-González, Pedro E; Medina-Noyola, Magdaleno; Laurati, Marco · Soft Matter · 2018

basic_science · Level V

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Abstract

We report an experimental and theoretical investigation of glass formation in soft thermo-sensitive colloids following two different routes: a gradual increase of the particle number density at constant temperature and an increase of the radius in a fixed volume at constant particle number density. Confocal microscopy experiments and the non-equilibrium self-consistent generalized Langevin equation (NE-SCGLE) theory consistently show that the two routes lead to a dynamically comparable state at sufficiently long aging times. However, experiments reveal the presence of moderate but persistent structural differences. Successive cycles of radius decrease and increase lead instead to a reproducible glass state, indicating a suitable route to obtain rejuvenation without using shear fields.