Relaxation of internal stresses through a cascade of microscopic restructuring events is the hallmark of many materials, ranging from amorphous solids like glasses and gels to geological structures subjected to a persistent external load. By means of photon correlation imaging, a recently developed technique that blends the powers of scattering and imaging, we provide a spatially and temporally resolved survey of the restructuring and aging processes that spontaneously occur in physical gels originating from an arrested phase separation. We show that the temporal dynamics is characterized by an intermittent sequence of spatially localized "microquakes" that eventually lead to global rearrangements occurring at a rate that scales with the ge...
We use multispeckle dynamic light scattering to measure the dynamic structure factor, f(q, tau), of ...
In polymers melts and supercooled liquids, the glassy dynamics is characterized by the rattling of m...
The fundamental understanding of the gelation kinetics, stress relaxation and temporal evolution in ...
Relaxation of internal stresses through a cascade of microscopic restructuring events is the hallmar...
Réf Journal: Phys. Rev. E 95, 060601 (2017)International audienceWe use large-scale computer simulat...
The fast setting of gels originating from an arrested phase separation leads to solid structures tha...
We introduce a new dynamic light scattering method, termed photon correlation imaging, which enables...
By exploiting photon correlation imaging and ghost particle velocimetry, two novel optical correlati...
We re-examine the classical problem of irreversible colloid aggregation, showing that the applicatio...
We investigate the out-of-equilibrium dynamics of a colloidal gel obtained by quenching a suspension...
We investigate macromolecular physical gels (strontium alginates) in a wide range of aging times and...
Microscopically disordered materials are at the core of an increasing number of new material technol...
PostprintWe explore the origins of slow dynamics, aging and glassy rheology in soft and living matte...
We use multispeckle dynamic light scattering to measure the dynamic structure factor, f(q, tau), of ...
In polymers melts and supercooled liquids, the glassy dynamics is characterized by the rattling of m...
The fundamental understanding of the gelation kinetics, stress relaxation and temporal evolution in ...
Relaxation of internal stresses through a cascade of microscopic restructuring events is the hallmar...
Réf Journal: Phys. Rev. E 95, 060601 (2017)International audienceWe use large-scale computer simulat...
The fast setting of gels originating from an arrested phase separation leads to solid structures tha...
We introduce a new dynamic light scattering method, termed photon correlation imaging, which enables...
By exploiting photon correlation imaging and ghost particle velocimetry, two novel optical correlati...
We re-examine the classical problem of irreversible colloid aggregation, showing that the applicatio...
We investigate the out-of-equilibrium dynamics of a colloidal gel obtained by quenching a suspension...
We investigate macromolecular physical gels (strontium alginates) in a wide range of aging times and...
Microscopically disordered materials are at the core of an increasing number of new material technol...
PostprintWe explore the origins of slow dynamics, aging and glassy rheology in soft and living matte...
We use multispeckle dynamic light scattering to measure the dynamic structure factor, f(q, tau), of ...
In polymers melts and supercooled liquids, the glassy dynamics is characterized by the rattling of m...
The fundamental understanding of the gelation kinetics, stress relaxation and temporal evolution in ...