We consider the mechanism for very slow relaxation in a supercooled liquid in the framework of the self-consistent mode coupling model. The short time dynamics in the model is taken into account through the inclusion of the bare transport coefficient while the cooperative dynamics over different time and length scales is approximated through the mode coupling terms. A lower cutoff time t0 for the memory functions representing the long time dynamics is considered in order to account for the contribution coming from the bare transport coefficients. In the present work, we have investigated the implications of this cutoff time (t0) for the asymptotic dynamics in the supercooled regime. Our calculation shows that the self-consistent approach re...
A model for the slow dynamics of the supercooled liquid is formulated in terms of the standard equat...
The ergodicity-nonergodicity (ENE) transition of the self-consistent mode-coupling theory (MCT) is m...
Several fluctuation-dissipation relations are investigated for a simple free-energy landscape model ...
Two fluctuating hydrodynamic models for the supercooled liquid are considered. The self-consistent m...
We made a molecular dynamics study of single-particle dynamics of water molecules in deeply supercoo...
The properties of the a- and P-processes as described within the mode-coupling theory for the dynami...
A self-consistent mode-coupling model for relaxation of density fluctuations in a supercooled liquid...
The dynamics of Lennard-Jones fluid is studied through extended mode coupling theory (MCT) with the ...
The dynamics of Lennard–Jones fluid is studied through extended mode coupling theory (MCT) with the ...
We perform lone molecular dynamics simulations of liquid water in normal and supercooled states for ...
Nonlinear fluctuating hydrodynamic (NFH) models for relaxation in the supercooled liquid are conside...
We consider glassy relaxation by using a model for supercooled liquid where the usual set of hydrody...
We present a model for glassy dynamics in supercooled liquid mixtures. Given the relaxation behavior...
A unified treatment of structural relaxation in a deeply supercooled glassy liquid is developed whic...
We present a molecular-dynamics study of the self-dynamics of water molecules in deeply supercooled ...
A model for the slow dynamics of the supercooled liquid is formulated in terms of the standard equat...
The ergodicity-nonergodicity (ENE) transition of the self-consistent mode-coupling theory (MCT) is m...
Several fluctuation-dissipation relations are investigated for a simple free-energy landscape model ...
Two fluctuating hydrodynamic models for the supercooled liquid are considered. The self-consistent m...
We made a molecular dynamics study of single-particle dynamics of water molecules in deeply supercoo...
The properties of the a- and P-processes as described within the mode-coupling theory for the dynami...
A self-consistent mode-coupling model for relaxation of density fluctuations in a supercooled liquid...
The dynamics of Lennard-Jones fluid is studied through extended mode coupling theory (MCT) with the ...
The dynamics of Lennard–Jones fluid is studied through extended mode coupling theory (MCT) with the ...
We perform lone molecular dynamics simulations of liquid water in normal and supercooled states for ...
Nonlinear fluctuating hydrodynamic (NFH) models for relaxation in the supercooled liquid are conside...
We consider glassy relaxation by using a model for supercooled liquid where the usual set of hydrody...
We present a model for glassy dynamics in supercooled liquid mixtures. Given the relaxation behavior...
A unified treatment of structural relaxation in a deeply supercooled glassy liquid is developed whic...
We present a molecular-dynamics study of the self-dynamics of water molecules in deeply supercooled ...
A model for the slow dynamics of the supercooled liquid is formulated in terms of the standard equat...
The ergodicity-nonergodicity (ENE) transition of the self-consistent mode-coupling theory (MCT) is m...
Several fluctuation-dissipation relations are investigated for a simple free-energy landscape model ...