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M B Hamaneh

Publications and source records attributed to M B Hamaneh.

3 recordsLinked to original sources

Phase sequences and long-range interactions in ferroelectric liquid crystals.

The origin of the long-range interlayer interactions responsible for the variety of phases exhibited by ferroelectric liquid crystals is discussed. It is shown that the anisotropy of the elastic constants that govern layer bending in smectic- C liquid crystals results in an effective long-range interaction between the smectic layers. The nature of this interaction is such as to favor a mutual alignment of the c directors of the layers in either a parallel or antiparallel orientation. The free energy of the system is the sum of the contributions of these long-range interlayer interactions and the short-range interaction between nearest-neighboring layers, which favors a purely helical structure for the c directors. The long-range interaction is found to favor commensurate structures while the short-range term favors incommensurate helices. The resulting structure is of the type characterized in the "distorted clock model." The phase diagrams that result from the application of this theory are consistent with the experimentally observed phase sequences.

Journal Article↗

Long-range interlayer interactions in ferroelectric liquid crystals.

Some smectic liquid crystals exhibit a series of phases, including ferroelectric, antiferroelectric, and ferrielectric commensurate structures as well as an incommensurate phase. A long-standing problem has been to understand the origin of the long-range interaction responsible for this rich variety of phases. We study a model that incorporates thermal fluctuations in the flexing of layers and find that it supports commensurate and incommensurate structures. The vibrational entropy competes with an assumed helical interaction between nearest-neighbor layers. An increase in temperature then leads to an unwinding of the helix that proceeds at first through commensurate phases and then into an incommensurate phase. This result is consistent with the experimentally observed "distorted clock model."

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Theory of layer structure in ferroelectric liquid crystal devices in applied electric fields.

We propose a model for the free energy of a ferroelectric liquid crystal formed by cooling a sample from the smectic-A phase between parallel substrates. Under these circumstances the smectic layers may deform into V-shaped structures known as chevrons. Application of a strong electric field causes the layers to return to a flat shape, but this can occur in a number of ways. In the model presented here, it is a parameter related to the layer compression modulus that is the principal factor in determining the nature of the field-induced transition from chevrons to flat layers. When this parameter is large, the transition is sudden, but when it is small the chevron first takes on a rounded form before flattening. At intermediate values the tip of the chevron first flattens, and then this flat region gradually grows to encompass the entire layer.

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