Smectic-C tilt under shear in smectic-A elastomers.

Phys Rev E Stat Nonlin Soft Matter Phys

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

Published: August 2008

AI Article Synopsis

  • Stenull and Lubensky propose that in smectic elastomers, applying shear strain causes a tilt in the director of the material, similar to smectic-C behavior.
  • Kramer and Finkelmann conducted experiments confirming this tilt effect in smectic-A elastomers during simple shear.
  • The authors expand on a previous model to analyze the tilt angle under different shear conditions, noting complications with one geometry due to additional compressive forces.

Article Abstract

Stenull and Lubensky [Phys. Rev. E 76, 011706 (2007)] have argued that shear strain and tilt of the director relative to the layer normal are coupled in smectic elastomers and that the imposition of one necessarily leads to the development of the other. This means, in particular, that a smectic-A elastomer subjected to a simple shear will develop smectic-C-like tilt of the director. Recently, Kramer and Finkelmann [e-print arXiv:0708.2024; Phys. Rev. E 78, 021704 (2008)], performed shear experiments on smectic-A elastomers using two different shear geometries. One of the experiments, which implements simple shear, produces clear evidence for the development of smectic-C-like tilt. Here, we generalize a model for smectic elastomers introduced by Adams and Warner [Phys. Rev. E 71, 021708 (2005)] and use it to study the magnitude of SmC-like tilt under shear for the two geometries investigated by Kramer and Finkelmann. Using reasonable estimates of model parameters, we estimate the tilt angle for both geometries, and we compare our estimates to the experimental results. The other shear geometry is problematic since it introduces additional in-plane compressions in a sheetlike sample, thus inducing instabilities that we discuss.

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Source
http://dx.doi.org/10.1103/PhysRevE.78.021705DOI Listing

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