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Hexatic ordering in freely suspended liquid crystal films
Authors:J. D. Brock  D. Y. Noh  B. R. McClain  J. D. Litster  R. J. Birgeneau  Amnon Aharony  P. M. Horn  Jason C. Liang
Affiliation:(1) Department of Physics, Massachusetts Institute of Technology, 02139 Massachusetts, Cambridge, USA;(2) School of Physics and Astronomy, Tel Aviv University, Tel Aviv, Israel;(3) IBM Thomas J. Watson Research Center, 10598 Yorktown Heights, New York, USA;(4) Display Research Group, Tektronix, Inc., 97077 Beaverton, Oregon, USA
Abstract:In this paper, we report results from synchrotron X-ray scattering studies of thefluid/hexactic/solid phases and phase transitions in both very thick and very thin, freely suspended films of tilted hexatic liquid crystals. Contrary to the thick film case, the higher Fourier coefficients describing the bond orientational order are suppressed in very thin films. This suppression is consistent with a two-dimensional bond orientational order parameter,PSgr6, rather than the three-dimensional bond orientational order parameter found in very thick films. For a film containing twently-three (23) smectic layers we find thatPSgr6 is two-dimensional whereas the positional order in the crystallineSJ phase is three-dimensional. We present an analysis of the thick film data in terms of the three-dimensionalXY-model and a new mean field theory model which incorporates explicitly the quasi two-dimensional nature of bulk smectic phases.
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