The structure of the glass phase of Rb1−x(ND4)xD2PO4 |
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Authors: | R. A. Cowley T. W. Ryan E. Courtens |
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Affiliation: | (1) Department of Physics, University of Edinburgh, Mayfield Road, EH9 3JZ Edinburgh, Scotland;(2) IBM Zurich Research Laboratory, Säumerstrasse 4, CH-8803 Rüschlikon, Switzerland |
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Abstract: | ![]() X-ray scattering techniques have been used to study the diffuse scattering from a single crystal of Rb1–x(ND4)xD2PO4 withx=0.65. This system has a structural glass phase at low temperatures resulting from the competing ferroelectric interactions of RbD2PO4 and antiferroelectric interactions of (ND4)D2PO4. The diffuse scattering shows a broad peak with a maximum occurring at a wavevector of about 0.3a*, and the intensity of these peaks is surprisingly different for wavevectorsq on opposite sides of the Bragg reflections. A model of the D bonding is developed which suggests that the diffuse scattering arises from the interaction between ferroelectric displacements alongc, ferroelectric displacements alongb, and transverse acoustic modes polarized alongb andc. The model accounts for the incommensurate wavevector and, qualitatively, for the intensity of the diffuse scattering around different Bragg reflections. The temperature dependence of the scattering is also measured. |
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