Manipulating Ferroelectric Domains in Nanostructures Under Electron Beams

R. Ahluwalia, N. Ng, A. Schilling, R. G. P. McQuaid, D. M. Evans, J. M. Gregg, D. J. Srolovitz, and J. F. Scott
Phys. Rev. Lett. 111, 165702 – Published 16 October 2013
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Abstract

Freestanding BaTiO3 nanodots exhibit domain structures characterized by distinct quadrants of ferroelastic 90° domains in transmission electron microscopy (TEM) observations. These differ significantly from flux-closure domain patterns in the same systems imaged by piezoresponse force microscopy. Based upon a series of phase field simulations of BaTiO3 nanodots, we suggest that the TEM patterns result from a radial electric field arising from electron beam charging of the nanodot. For sufficiently large charging, this converts flux-closure domain patterns to quadrant patterns with radial net polarizations. Not only does this explain the puzzling patterns that have been observed in TEM studies of ferroelectric nanodots, but also suggests how to manipulate ferroelectric domain patterns via electron beams.

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  • Received 13 April 2013

DOI:https://doi.org/10.1103/PhysRevLett.111.165702

© 2013 American Physical Society

Authors & Affiliations

R. Ahluwalia1, N. Ng1, A. Schilling2, R. G. P. McQuaid2, D. M. Evans2, J. M. Gregg2, D. J. Srolovitz3, and J. F. Scott4

  • 1Institute of High Performance Computing, Singapore 138632, Singapore
  • 2School of Mathematics and Physics, Queen’s University Belfast, Belfast BT7 1NN, United Kingdom
  • 3Departments of Materials Science and Engineering, Mechanical Engineering and Applied Mechanics, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA
  • 4Department of Physics, Cavendish Laboratory, J. J. Thompson Avenue, Cambridge CB3 0HE, United Kingdom

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Issue

Vol. 111, Iss. 16 — 18 October 2013

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