Defect–Domain Wall Interactions in Trigonal Ferroelectrics

Author:

Gopalan Venkatraman1,Dierolf Volkmar2,Scrymgeour David A.3

Affiliation:

1. Department of Materials Science and Engineering, Pennsylvania State University, University Park, Pennsylvania 16802;

2. Department of Physics, Lehigh University, Bethlehem, Pennsylvania 18015

3. Surface and Interface Sciences, Sandia National Laboratory, Albuquerque, New Mexico 98185-1415

Abstract

Domains and domain walls are a fundamental property of interest in ferroelectrics, magnetism, ferroelastics, superconductors, and multiferroic materials. Unlike magnetic Bloch walls, ideal ferroelectric domain walls are well accepted to be only one to two lattice units wide, over which polarization and strain change across the wall. However, walls in real ferroelectrics appear to show unexpected property variations in the vicinity of domain walls that can extend over micrometer length scales. This chapter specifically reviews the local electrical, elastic, optical, and structural properties of antiparallel domain walls in the trigonal ferroelectrics lithium niobate and lithium tantalate. It is shown that extrinsic point defects and their clustering play a key role in the observed local wall structure and influence macroscale properties by orders of magnitude. The review also raises broader and yet unexplored fundamental questions regarding intrinsic widths, defect–domain wall interactions, and static versus dynamic wall structure.

Publisher

Annual Reviews

Subject

General Materials Science

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