Chiral conformational fluctuations soften the twist elasticity of nematics
Paul van der SchootAchiral nematogens may exhibit transient chiral states that interconvert by thermal fluctuations due to low energetic barriers between left- and right-handed twisted conformations. Allowing for a thermodynamic equilibrium between the mirror-image enantiomers and accounting for favorable chiral interactions between like enantiomeric species, we show by mean-field theory that a mechanical twist deformation in a slab geometry deracemizes such compounds. This, in turn, leads to a softening of the twist elastic response of the nematic. We find that the twist elastic constant vanishes at a second order transition to a state where cholesteric phases with opposite handedness and enantiomeric excess coexist. Even though this transition is usually hidden by a transition to, e.g., a crystalline state, we predict that the twist constant could develop an unusual temperature dependence due to pretransitional effects.