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High-frequency dielectric relaxation of liquid crystals: THz time-domain spectroscopy of liquid crystal colloids
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High-frequency dielectric relaxation of liquid crystals: THz time-domain spectroscopy of liquid crystal colloids

Masahito Oh-E, Hiroshi Yokoyama, Mattijs Koeberg, Euan HendryMischa Bonn
Optics Express, 卷.14(23), 頁碼.11433-11441
2006

摘要

Atomic and Molecular Physics and Optics
Terahertz time-domain spectroscopy has been used to study the dielectric relaxation of pure 4'-n-pentyl-4-cyanobiphenyl (5CB) liquid crystal (LC) and its mixtures with 10 μm SiO <sub>2</sub> particles in the frequency range 0.2-2 THz. For the pure sample, we find that spatial inhomogeneities consisting of oriented domains, comparable in size to our probe area (∼ 1 mm <sup>2</sup> ), cause a large scatter in the measured dielectric function, due to varying contributions from the ordinary and extraordinary components. In the LC/particle mixtures, ordering of the LC at the surface of the SiO <sub>2</sub> particles results in a break-up of these domains, giving rise to a spatially much more homogeneous dielectric response. The inferred dielectric function can be interpreted using effective medium theory and the Debye relaxation model. We observe this stabilizing effect for interparticle distances < ∼30 μm, setting a lower limit for the size of oriented domains in the bulk LC. © 2006 Optical Society of America.

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