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Phys. Rev. E 61, 6663–6668 (2000)

Magnetic-field-induced periodic deformations in planar nematic layers

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D. Krzyżański* and G. Derfel
Institute of Physics, Technical University of Łódź, ulica Wólczańska 223, 93-005 Łódź, Poland

Received 1 March 1999; revised 16 November 1999; published in the issue dated June 2000

Periodic deformations of strongly anchored planar nematic layers subjected to magnetic fields were studied numerically. Two magnetic-field configurations, giving rise to the so-called periodic splay-twist and periodic twist-splay patterns, were taken into account. The stationary director distribution was calculated for various values of elastic anisotropy and magnetic-field strength. Some alternative conclusions that shed light on the properties of the periodic deformations were drawn: (i) the transition from the periodically deformed structure to the homogeneously deformed one, which occurs in high field, is due to the divergence of the spatial period of the deformations to infinity; (ii) the spatial dependence of the angles determining the high-field director distribution strongly deviates from the theoretically predicted functions of sinusoidal form. The diagrams showing the ranges of parameters, for which the periodic deformations can realize, were built. The stable wave-number bands were determined numerically.

© 2000 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevE.61.6663
DOI:
10.1103/PhysRevE.61.6663
PACS:
61.30.Cz, 61.30.Gd

*Author to whom correspondence should be addressed.