Supercooled liquids are characterized by relaxation times that increase dramatically by cooling or compression. From a single assumption follows a scaling law according to which the relaxation time is a function of h(ρ) over temperature, where ρ is the density and the function h(ρ) depends on the liquid in question. This scaling is demonstrated to work well for simulations of the Kob-Andersen binary Lennard-Jones mixture and two molecular models, as well as for the experimental results for two van der Waals liquids, dibutyl phthalate and decahydroisoquinoline. The often used power-law density scaling, h(ρ)∝ργ, is an approximation to the more general form of scaling discussed here. A thermodynamic derivation was previously given for an expli...
The glass transition remains one of the great open problems of modern physics. This dissertation aim...
The microscopic origin of glass transition, when liquid viscosity changes continuously by more than ...
Liquids realize a highly complex state of matter in which strong competing kinetic and interaction e...
In this paper, we show that a simple anisotropic model of supercooled liquid properly reflects some...
When they are cooled or compressed, several systems such as liquids, mixtures, polymers, biomaterial...
In this paper, applying the density scaling idea to an associated liquid 4-methyl-2-pentanol used a...
A broad fundamental understanding of the mechanisms underlying the phenomenology of supercooled liqu...
We show that the density and temperature dependences of the α-relaxation time of several glass-formi...
2We use molecular dynamics simulation results on viscous binary Lennard-Jones mixtures to examine th...
Using molecular dynamics simulations of a molecular liquid, we investigate the thermodynamic scaling...
By now it is well established that the structural α-relaxation time, τ α, of non-associated small mo...
The relaxation dynamics in two van der Waals bonded liquids and one hydrogen-bonding molecular liqui...
An increase in the co-operativity in the motion of particles and a growth of a suitably defined dyna...
2We present numerical calculations of a four-point dynamic susceptibility, chi(4)(t), for the Kob-An...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
The glass transition remains one of the great open problems of modern physics. This dissertation aim...
The microscopic origin of glass transition, when liquid viscosity changes continuously by more than ...
Liquids realize a highly complex state of matter in which strong competing kinetic and interaction e...
In this paper, we show that a simple anisotropic model of supercooled liquid properly reflects some...
When they are cooled or compressed, several systems such as liquids, mixtures, polymers, biomaterial...
In this paper, applying the density scaling idea to an associated liquid 4-methyl-2-pentanol used a...
A broad fundamental understanding of the mechanisms underlying the phenomenology of supercooled liqu...
We show that the density and temperature dependences of the α-relaxation time of several glass-formi...
2We use molecular dynamics simulation results on viscous binary Lennard-Jones mixtures to examine th...
Using molecular dynamics simulations of a molecular liquid, we investigate the thermodynamic scaling...
By now it is well established that the structural α-relaxation time, τ α, of non-associated small mo...
The relaxation dynamics in two van der Waals bonded liquids and one hydrogen-bonding molecular liqui...
An increase in the co-operativity in the motion of particles and a growth of a suitably defined dyna...
2We present numerical calculations of a four-point dynamic susceptibility, chi(4)(t), for the Kob-An...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
The glass transition remains one of the great open problems of modern physics. This dissertation aim...
The microscopic origin of glass transition, when liquid viscosity changes continuously by more than ...
Liquids realize a highly complex state of matter in which strong competing kinetic and interaction e...