Abstract

Fourier transforms of the dipole-dipole interaction D ( q ) are computed in orthorhombic simple, body-centered and face-centered lattices. The ratios of the lattice constants a and b to the lattice constant c are varied as parameters. The modulation wave vectors q min where D ( q ) takes the minimum value are shown in a / c - b / c planes. Sinusoidal arrays are found to be of the minimum energy in wide regions in these planes in the cases of body-centered and face-centered lattices. Contributions to D ( q ) from sublattices are separately calculated. The different a / c and b / c dependences of them are found to result in the deviation of q min from the origin (the ferroelectric array) or zone boundaries (antiferroelectric arrays) in the q -space.

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