The ground state of twist-bend nematic liquid crystals is a heliconical molecular arrangement in which the nematic director precesses uniformly about an axis, making a fixed angle with it. Both precession senses are allowed in the ground state of these phases. When one of the two helicities is prescribed, a single helical nematic phase emerges. A quadratic elastic theory is proposed here for each of these phases which features the same elastic constants as the classical theory of the nematic phase, requiring all of them to be positive. To describe the helix axis, it introduces an extra director field which becomes redundant for ordinary nematics. Putting together helical nematics with opposite helicities, we reconstruct a twist-bend n...
Liquid crystalline materials form a whole array of interesting textures and phases. While there are ...
The extended Frank elastic energy density is used to investigate the existence of a stable periodica...
Liquid crystal dimers with odd spacers are good candidates as materials for biaxial nematic phases (...
The ground state of twist-bend nematic liquid crystals is a heliconical molecular arrangement in whi...
The recently discovered twist-bend nematic phase, Ntb, is a non-uniform equilibrium nematic phase th...
The recently discovered twist-bend nematic phase, Ntb, is a non-uniform equilibrium nematic phase t...
The nonlinear elastic properties of nematic liquid crystals have acquired new interest with the rece...
The twist-bend nematic phase, NTB, may be viewed as a heliconical molecular arrangement in which the...
By use of a standard theoretical method, we arrive at a coarse-grained elastic energy density for tw...
We propose an extension of Frank-Oseen's elastic energy for bulk nematic liquid crystals which is ba...
It has been found that bent-shaped achiral molecules can form a liquid crystal phase, called the Twi...
Bent-shaped liquid crystal dimers exhibit a non-conventional nematic phase, which in the last few ye...
Bent-shaped liquid crystal dimers exhibit a non-conventional nematic phase, which in the last few ye...
Recently, possible deformed states in nematic liquid crystals have been discussed assuming that Fran...
International audienceFrom the elastic point of view, the twist-bend nematic phase, (N-TB), has a gr...
Liquid crystalline materials form a whole array of interesting textures and phases. While there are ...
The extended Frank elastic energy density is used to investigate the existence of a stable periodica...
Liquid crystal dimers with odd spacers are good candidates as materials for biaxial nematic phases (...
The ground state of twist-bend nematic liquid crystals is a heliconical molecular arrangement in whi...
The recently discovered twist-bend nematic phase, Ntb, is a non-uniform equilibrium nematic phase th...
The recently discovered twist-bend nematic phase, Ntb, is a non-uniform equilibrium nematic phase t...
The nonlinear elastic properties of nematic liquid crystals have acquired new interest with the rece...
The twist-bend nematic phase, NTB, may be viewed as a heliconical molecular arrangement in which the...
By use of a standard theoretical method, we arrive at a coarse-grained elastic energy density for tw...
We propose an extension of Frank-Oseen's elastic energy for bulk nematic liquid crystals which is ba...
It has been found that bent-shaped achiral molecules can form a liquid crystal phase, called the Twi...
Bent-shaped liquid crystal dimers exhibit a non-conventional nematic phase, which in the last few ye...
Bent-shaped liquid crystal dimers exhibit a non-conventional nematic phase, which in the last few ye...
Recently, possible deformed states in nematic liquid crystals have been discussed assuming that Fran...
International audienceFrom the elastic point of view, the twist-bend nematic phase, (N-TB), has a gr...
Liquid crystalline materials form a whole array of interesting textures and phases. While there are ...
The extended Frank elastic energy density is used to investigate the existence of a stable periodica...
Liquid crystal dimers with odd spacers are good candidates as materials for biaxial nematic phases (...