The non-Arrhenius behavior of segmental dynamics in glass-forming liquids is one of the most profound mysteries in soft matter physics. In this article, we propose a dynamically correlated network (DCN) model to understand the growing behavior of dynamically correlated regions during cooling, which leads to the viscous slowdown of supercooled liquids. The fundamental concept of the model is that the cooperative region of collective motions has a network structure that consists of string-like parts, and networks of various sizes interpenetrate each other. Each segment undergoes dynamical coupling with its neighboring segments via a finite binding energy. Monte Carlo simulations showed that the fractal dimension of the DCNs generated at diffe...
In glassy dynamics, the rattling of particles in a cage formed by their neighbors is typically limit...
We present a model for glassy dynamics in supercooled liquid mixtures. Given the relaxation behavior...
We investigate the statics and dynamics of a glassy,non-entangled, short bead-spring polymer melt wi...
The dynamic correlations that emerge in a polymer system in supercooling conditions have been studie...
We report a detailed computational study by Brownian Dynamics simulations of the structure and dynam...
8 pages, 4 figures, 3 tablesWhen a liquid is cooled below its melting temperature, if crystallizatio...
In this work we review recent computational advances in the understanding of the relaxationdynamics ...
If quenched fast enough, a liquid is able to avoid crystallization and will remain in a metastable s...
A key point to understand the glass transition is the relationship between structural and dynamic be...
2The role of the intermolecular interaction potential on the dynamic and thermodynamic properties of...
In polymers melts and supercooled liquids, the glassy dynamics is characterized by the rattling of m...
A relatively recent discovery that brings new insights to the dynamics of supercooled liquids is the...
Glassy systems are disordered systems characterized by extremely slow dynamics. Examples are superco...
We discuss the results of intensive Brownian dynamics simulations of a simple model of tetrahedral p...
The relationship between the microscopic arrangement of molecules in a supercooled liquid and its sl...
In glassy dynamics, the rattling of particles in a cage formed by their neighbors is typically limit...
We present a model for glassy dynamics in supercooled liquid mixtures. Given the relaxation behavior...
We investigate the statics and dynamics of a glassy,non-entangled, short bead-spring polymer melt wi...
The dynamic correlations that emerge in a polymer system in supercooling conditions have been studie...
We report a detailed computational study by Brownian Dynamics simulations of the structure and dynam...
8 pages, 4 figures, 3 tablesWhen a liquid is cooled below its melting temperature, if crystallizatio...
In this work we review recent computational advances in the understanding of the relaxationdynamics ...
If quenched fast enough, a liquid is able to avoid crystallization and will remain in a metastable s...
A key point to understand the glass transition is the relationship between structural and dynamic be...
2The role of the intermolecular interaction potential on the dynamic and thermodynamic properties of...
In polymers melts and supercooled liquids, the glassy dynamics is characterized by the rattling of m...
A relatively recent discovery that brings new insights to the dynamics of supercooled liquids is the...
Glassy systems are disordered systems characterized by extremely slow dynamics. Examples are superco...
We discuss the results of intensive Brownian dynamics simulations of a simple model of tetrahedral p...
The relationship between the microscopic arrangement of molecules in a supercooled liquid and its sl...
In glassy dynamics, the rattling of particles in a cage formed by their neighbors is typically limit...
We present a model for glassy dynamics in supercooled liquid mixtures. Given the relaxation behavior...
We investigate the statics and dynamics of a glassy,non-entangled, short bead-spring polymer melt wi...