Fully attractive and partly repulsive molecular interactions, characteristic of biaxial liquid crystal molecules, are described by a class of quadratic Hamiltonians, originally put forward by Straley. The partly repulsive interactions require a minimax principle for the associated mean-field free energy. By analyzing the different phases in a bifurcation scenario, we show that the phase diagram described by Sonnet et al. [Phys. Rev. E 67 061701 (2003)] is universal. Our model predictions are in agreement with recent observations on both V-shaped and tetrapodal molecules
The biaxial nematic phase diagram for the second rank Straley quadrupolar pair potential, as explore...
We further pursue the analysis of a mean-field model recently proposed by Sonnet et al. [Phys. Rev. ...
In this paper, we present a simple one tensor mean field model of biaxial nematic liquid crystals. T...
We study a class of quadratic Hamiltonians which describe both fully attractive and partly repulsive...
We describe a general mean field model for the free energy function for a homogeneous medium of mutu...
The interest for macroscopic biaxiality has been recently revived by the experimental evidence of th...
Relative stability of uniaxial and biaxial nematic phases is analyzed in a model nematic liquid crys...
We present a phenomenological theory for the homogeneous phases of nematic liquid crystals constitut...
Recent experiments report that the long-looked-for thermotropic biaxial nematic phase has been final...
Over the last few years, renewed interest has been raised by the simplified general interaction mode...
Recent experimental findings about new nematogenic molecules have reported thermally driven transiti...
A minimal coupling model exhibiting isotropic, uniaxial, and biaxial nematic phases is analyzed in d...
The investigation of the possible uniaxial phases of a fluid of biaxial particles undertaken by Berg...
A statistical theory of biaxial nematic and cholesteric phases is presented. It is derived in the th...
A unified mean-field molecular theory of nematic (NU), smectic A (SmA), and smectic C (SmC) liquid c...
The biaxial nematic phase diagram for the second rank Straley quadrupolar pair potential, as explore...
We further pursue the analysis of a mean-field model recently proposed by Sonnet et al. [Phys. Rev. ...
In this paper, we present a simple one tensor mean field model of biaxial nematic liquid crystals. T...
We study a class of quadratic Hamiltonians which describe both fully attractive and partly repulsive...
We describe a general mean field model for the free energy function for a homogeneous medium of mutu...
The interest for macroscopic biaxiality has been recently revived by the experimental evidence of th...
Relative stability of uniaxial and biaxial nematic phases is analyzed in a model nematic liquid crys...
We present a phenomenological theory for the homogeneous phases of nematic liquid crystals constitut...
Recent experiments report that the long-looked-for thermotropic biaxial nematic phase has been final...
Over the last few years, renewed interest has been raised by the simplified general interaction mode...
Recent experimental findings about new nematogenic molecules have reported thermally driven transiti...
A minimal coupling model exhibiting isotropic, uniaxial, and biaxial nematic phases is analyzed in d...
The investigation of the possible uniaxial phases of a fluid of biaxial particles undertaken by Berg...
A statistical theory of biaxial nematic and cholesteric phases is presented. It is derived in the th...
A unified mean-field molecular theory of nematic (NU), smectic A (SmA), and smectic C (SmC) liquid c...
The biaxial nematic phase diagram for the second rank Straley quadrupolar pair potential, as explore...
We further pursue the analysis of a mean-field model recently proposed by Sonnet et al. [Phys. Rev. ...
In this paper, we present a simple one tensor mean field model of biaxial nematic liquid crystals. T...