Weak Coupling Effect on the Magnetic Freedericksz Transition in a Ferronematic Liquid Crystal
- Authors: Popov V.A.1, Gilev V.G.1, Zakhlevnykh A.N.1
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Affiliations:
- Perm State University
- Issue: Vol 60, No 7 (2018)
- Pages: 1462-1467
- Section: Liquid Crystals
- URL: https://journals.rcsi.science/1063-7834/article/view/203525
- DOI: https://doi.org/10.1134/S1063783418070247
- ID: 203525
Cite item
Abstract
The magnetic Freedericksz transition in a ferronematic representing a diluted suspension of magnetic nanoparticles in an N-(4-methoxybenzylidene)-4-butylaniline (MBBA) nematic liquid crystal was experimentally studied. The transition point was determined by means of dielectric capacitance measurements in cells of different thickness for samples with various volume fractions of ferroparticles. The effect of weak coupling between the magnetic and liquid-crystal subsystems was studied. Low concentrations of quasispherical magnetic particles were shown to decrease the magnetic Freedericksz transition threshold in comparison with a pure liquid crystal. The obtained results were theoretically substantiated. The phase diagram of the suspension was plotted, and the method of estimating the energy of coupling between magnetic particles and a liquid-crystal matrix was proposed.
About the authors
V. A. Popov
Perm State University
Email: anz@psu.ru
Russian Federation, Perm, 614990
V. G. Gilev
Perm State University
Email: anz@psu.ru
Russian Federation, Perm, 614990
A. N. Zakhlevnykh
Perm State University
Author for correspondence.
Email: anz@psu.ru
Russian Federation, Perm, 614990
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