Smectic ordering in liquid crystal - aerosil dispersions II. Scaling analysis
arXiv:cond-mat/0208287 · doi:10.1103/PhysRevE.67.011709
Abstract
Liquid crystals offer many unique opportunities to study various phase transitions with continuous symmetry in the presence of quenched random disorder (QRD). The QRD arises from the presence of porous solids in the form of a random gel network. Experimental and theoretical work support the view that for fixed (static) inclusions, quasi-long-range smectic order is destroyed for arbitrarily small volume fractions of the solid. However, the presence of porous solids indicates that finite-size effects could play some role in limiting long-range order. In an earlier work, the nematic - smectic-A transition region of octylcyanobiphenyl (8CB) and silica aerosils was investigated calorimetrically. A detailed x-ray study of this system is presented in the preceding Paper I, which indicates that pseudo-critical scaling behavior is observed. In the present paper, the role of finite-size scaling and two-scale universality aspects of the 8CB+aerosil system are presented and the dependence of the QRD strength on the aerosil density is discussed.
14 pages, 10 figures, 1 table. Companion paper to "Smectic ordering in liquid crystal - aerosil dispersions I. X-ray scattering" by R.L. Leheny, S. Park, R.J. Birgeneau, J.-L. Gallani, C.W. Garland, and G.S. Iannacchione
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Cited by in corpus (13)
- Smectic ordering in liquid crystal - aerosil dispersions I. X-ray scattering
- Evolution of the isotropic to nematic phase transition in octyloxycyanobiphenyl+aerosil dispersions
- Enhanced Elasticity and Soft Glassy Rheology of a Smectic in a Random Porous Environment
- Controlled Ordering of Room-Temperature Magnetic Skyrmions in a Polar Van der Waals Magnet
- Smectic Liquid Crystals in an Anisotropic Random Environment
- High-resolution x-ray study of the nematic - smectic-A and smectic-A - smectic-C transitions in 8barS5-aerosil gels
- First order isotropic - smectic-A transition in liquid crystal-aerosil gels
- Calorimetric study of the nematic to smectic-\textit{A} and smectic-\textit{A} to smectic-\textit{C} phase transitions in liquid-crystal+aerosil dispersions
- Smectic-A and Smectic-C Phases and Phase Transitions in Liquid Crystal-Aerosil Gels
- Calorimetric study of the nematic to smectic-A phase transition in octylcyanobiphenyl-hexane binary mixtures
- High resolution x-ray study of nematic-smectic-A and Smectic-A-reentrant nematic transitions in liquid crystal+aerosil gels
- Bulk-boundary correspondence in soft matter
- Roughness as a measurement of random disorder