We demonstrate that a first order isotropic-to-nematic phase transition in liquid crystals can be succesfully modeled within the generalized Landau-de Gennes theory by selecting an appropriate combination of elastic constants. The numerical simulations of the model established in this paper qualitatively reproduce the experimentally observed configurations that include interfaces and topological defects in the nematic phase.11Nsciescopu
We consider free energy functionals to model equilibrium smectic A liquid crystal configurations in ...
Possible phases in a nematic liquid crystal confined to a spherical submicrometer droplet embedded i...
We use a hybrid method of lattice Boltzmann and finite differences to simulate flat and curved inter...
We propose a Landau–de Gennes variational theory fit to simultaneously describe isotropic, nematic, ...
We propose a Landau–de Gennes variational theory fit to simultaneously describe isotropic, nematic, ...
We propose a Landau–de Gennes variational theory fit to simultaneously describe isotropic, nematic, ...
We propose a Landau–de Gennes variational theory fit to simultaneously describe isotropic, nematic, ...
Through a numerical approach based on the Landau-de Gennes theory, we show that novel orientational ...
In this paper, we derive the sharp interface model of the nematic-isotropic phase transition from th...
A Landau-Ginzburg Hamiltonian describing a liquid crystal in the nematic phase near the nematic-colu...
We derive a supplemental evolution equation for an interface between the nematic and isotropic phase...
Surface-layer transitions in nematogenic materials characterized by a preferential planar surface in...
A density-functional description of liquid crystals is developed. Formally exact expansions for ther...
A density-functional description of liquid crystals is developed. Formally exact expansions for ther...
We apply a recently developed technique to determine adapted coordinates for the sixth degree Landau...
We consider free energy functionals to model equilibrium smectic A liquid crystal configurations in ...
Possible phases in a nematic liquid crystal confined to a spherical submicrometer droplet embedded i...
We use a hybrid method of lattice Boltzmann and finite differences to simulate flat and curved inter...
We propose a Landau–de Gennes variational theory fit to simultaneously describe isotropic, nematic, ...
We propose a Landau–de Gennes variational theory fit to simultaneously describe isotropic, nematic, ...
We propose a Landau–de Gennes variational theory fit to simultaneously describe isotropic, nematic, ...
We propose a Landau–de Gennes variational theory fit to simultaneously describe isotropic, nematic, ...
Through a numerical approach based on the Landau-de Gennes theory, we show that novel orientational ...
In this paper, we derive the sharp interface model of the nematic-isotropic phase transition from th...
A Landau-Ginzburg Hamiltonian describing a liquid crystal in the nematic phase near the nematic-colu...
We derive a supplemental evolution equation for an interface between the nematic and isotropic phase...
Surface-layer transitions in nematogenic materials characterized by a preferential planar surface in...
A density-functional description of liquid crystals is developed. Formally exact expansions for ther...
A density-functional description of liquid crystals is developed. Formally exact expansions for ther...
We apply a recently developed technique to determine adapted coordinates for the sixth degree Landau...
We consider free energy functionals to model equilibrium smectic A liquid crystal configurations in ...
Possible phases in a nematic liquid crystal confined to a spherical submicrometer droplet embedded i...
We use a hybrid method of lattice Boltzmann and finite differences to simulate flat and curved inter...