English

Annihilation dynamics of stringlike topological defects in a nematic lyotropic liquid crystal

Soft Condensed Matter 2015-06-15 v1 Data Analysis, Statistics and Probability

Abstract

Topological defects can appear whenever there is some type of ordering. Its ubiquity in nature has been the subject of several studies, from early Universe to condensed matter. In this work, we investigated the annihilation dynamics of defects and antidefects in a lyotropic nematic liquid crystal (ternary mixture of potassium laurate, decanol and deionized-destilated water) using the polarized optical light microscopy technique. We analyzed Schlieren textures with topological defects produced due to a symmetry breaking in the transition of the isotropic to nematic calamitic phase after a temperature quench. As result, we obtained for the distance D between two annihilating defects (defect-antidefect pair), as a function of time t remaining for the annihilation, the scaling law D ~ t^{\alpha}, with \alpha = 0.390 and standard deviation \sigma = 0.085. Our findings go in the direction to extend experimental results related to dynamics of defects in liquid crystals since only thermotropic and polymerics ones had been investigated. In addition, our results are in good quantitative agreement with previous investigations on the subject.

Keywords

Cite

@article{arxiv.1304.5539,
  title  = {Annihilation dynamics of stringlike topological defects in a nematic lyotropic liquid crystal},
  author = {R. R. Guimarães and R. S. Mendes and P. R. G. Fernandes and H. Mukai},
  journal= {arXiv preprint arXiv:1304.5539},
  year   = {2015}
}

Comments

Accepted for publication in Journal of Physics: Condensed Matter