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A molecular theory of smectic C liquid crystals made of rod-like molecules

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Abstract:

Organic compounds exhibiting the smectic C phase are made of rod-like molecules that have dipolar groups with lateral components. We argue that the off-axis character of the lateral dipolar groups can account for tilt in layered smectics (SmC, SmC*, SmI etc.). We develop a mean-field theory of the smectic C phase based on a single-particle potential of the form U C ∝ sin(2θ)cosφ, consistent with the biaxial nature of the phase, where θ and φ are the polar and azimuthal angles, respectively. The hard-rod interactions that favour the smectic A phase with zero tilt angle are also included. The theoretical phase diagrams compare favourably with experimental trends. Our theory also leads to the following results: i) a first-order smectic C to smectic A transition above some value of the McMillan parameter α, leading to a tricritical point on the smectic C to smectic A transition line and ii) a first-order smectic C to smectic C transition over a very small range of values of the model parameters. We have also extended the theory to include the next higher-order term in the tilting potential and to include the effect of different tilt angles for the molecular core and the chain in the SmC phase.

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Received 3 August 2002

RID="a"

ID="a"Present address: Department of Physics, Vijaya College, R. V. Road, Bangalore - 560 004, India.

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ID="b"e-mail: nvmadhu@rri.res.in

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Govind, A., Madhusudana, N. A molecular theory of smectic C liquid crystals made of rod-like molecules. Eur. Phys. J. E 9, 107–126 (2002). https://doi.org/10.1140/epje/i2002-10060-x

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  • DOI: https://doi.org/10.1140/epje/i2002-10060-x

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