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Neel-like domain walls in ferroelectric Pb(Zr,Ti)O3 single crystals.


ABSTRACT: In contrast to the flexible rotation of magnetization direction in ferromagnets, the spontaneous polarization in ferroelectric materials is highly confined along the symmetry-allowed directions. Accordingly, chirality at ferroelectric domain walls was treated only at the theoretical level and its real appearance is still a mystery. Here we report a Néel-like domain wall imaged by atom-resolved transmission electron microscopy in Ti-rich ferroelectric Pb(Zr1-xTix)O3 crystals, where nanometre-scale monoclinic order coexists with the tetragonal order. The formation of such domain walls is interpreted in the light of polarization discontinuity and clamping effects at phase boundaries between the nesting domains. Phase-field simulation confirms that the coexistence of both phases as encountered near the morphotropic phase boundary promotes the polarization to rotate in a continuous manner. Our results provide a further insight into the complex domain configuration in ferroelectrics, and establish a foundation towards exploring chiral domain walls in ferroelectrics.

SUBMITTER: Wei XK 

PROVIDER: S-EPMC4992163 | biostudies-literature | 2016 Aug

REPOSITORIES: biostudies-literature

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Néel-like domain walls in ferroelectric Pb(Zr,Ti)O3 single crystals.

Wei Xian-Kui XK   Jia Chun-Lin CL   Sluka Tomas T   Wang Bi-Xia BX   Ye Zuo-Guang ZG   Setter Nava N  

Nature communications 20160819


In contrast to the flexible rotation of magnetization direction in ferromagnets, the spontaneous polarization in ferroelectric materials is highly confined along the symmetry-allowed directions. Accordingly, chirality at ferroelectric domain walls was treated only at the theoretical level and its real appearance is still a mystery. Here we report a Néel-like domain wall imaged by atom-resolved transmission electron microscopy in Ti-rich ferroelectric Pb(Zr1-xTix)O3 crystals, where nanometre-scal  ...[more]

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