4.3 Article

Selective imaging of 3D director fields and study of defects in biaxial smectic A liquid crystals

Journal

EUROPEAN PHYSICAL JOURNAL E
Volume 16, Issue 2, Pages 179-191

Publisher

SPRINGER
DOI: 10.1140/epje/e2005-00019-8

Keywords

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Funding

  1. Direct For Mathematical & Physical Scien [844115] Funding Source: National Science Foundation
  2. Division Of Materials Research [844115] Funding Source: National Science Foundation

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We report on the selective imaging of different director fields in a biaxial smectic A (SmA(b)) liquid crystal using Fluorescence Confocal Polarizing Microscopy (FCPM) and Polarizing Microscopy ( PM). The patterns of two directors, namely the director (n) over cap (a) perpendicular to the lamellae and the director (n) over cap (b) in their planes are visualized by doping the liquid crystal with two fluorescent dyes with different orientation of the transition dipoles with respect to the lamellar matrix. The properties of defects such as disclinations and focal conic domains (FCDs) are consistent with the non-polar D-2h-symmetry of the SmA(b) mesophase in the studied mixture of bent-core and rod-like molecules: ( 1) majority of defects in the director (n) over cap (b) are half-integer +/- 1/2 disclinations; ( 2) the integer-strength +/-1 defects tend to split into the +/- 1/2 disclinations. We compare the vertical cross-sections of the +/- 1 disclinations in the (n) over cap (b) field in SmA(b) and uniaxial nematic samples. In SmA(b), the +/- 1 disclinations do not escape into the third dimension, while in the nematic samples with Schlieren textures they do despite the surface anchoring at the plates; the experimentally determined director field around the escaped disclination capped by a pair of surface point defects - boojums matches the one predicted recently [ C. Chiccoli et al., Phys. Rev. E 66, 030701 ( 2002)]. The FCD structure in SmA(b) is similar to that in SmA and SmC in terms of the normal to the layers but differs significantly in terms of the director field (n) over cap (b) parallel to the smectic layers. The FCDs in SmAb can be associated with topologically non-trivial configurations of (n) over cap (b) in the surrounding matrix that are equivalent to the disclination lines.

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