Physical Review Letters · 2005 · 49 citations · 9 references
Smectic-C elastomers can be prepared by cross-linking, e.g., liquid crystal polymers, in the smectic-A phase followed by a cooling through the smectic-A to smectic-C phase transition. This transition from D(infinityh) to C(2h) symmetry spontaneously breaks rotational symmetry in the smectic plane as does the transition from a smectic-A to a biaxial smectic phase with D(2h) symmetry. We study these transitions and the emergent elasticity of the smectic-C and biaxial phases in three related models and show that these phases exhibit soft elasticity analogous to that of nematic elastomers.
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<i>The Physics of Liquid Crystals</i>
P. G. de Gennes, Jacques Prost, Robert A. Pelcovits · Physics Today · 1995 · 9.7K citations
Part 1, Engineering, Physics +11
<i>Principles of Condensed Matter Physics</i>
P. M. Chaikin, T. C. Lubensky, Thomas A. Witten · Physics Today · 1995 · 2.2K citations