Issue 18, 2014

Conduction control at ferroic domain walls via external stimuli

Abstract

Intriguing functionalities at nano-sized domain walls have recently spawned a new paradigm for developing novel nanoelectronics due to versatile characteristics. In this study, we explore a new scenario to modulate the local conduction of ferroic domain walls. Three controlling parameters, i.e., external electrical field, magnetic field and light, are introduced to the 90° domain walls (90° DWs) of BiFeO3. Electrical modulation is realized by electrical transport, where the mobility of 90° DWs can be altered by gating voltage. We further use the ferromagnetic/antiferromagnetic coupling to reveal the inherent magnetism at the DWs. With an established magnetic nature, magnetotransport has been conducted to introduce magnetic controlling parameter, where a giant positive magnetoresistance change can be observed up to 200%. In addition, light modulated conduction, a core factor for multifunctional applications, is successfully demonstrated (current enhancement by a factor of 2 with 11 W white lamp). These results offer new insights to discover the tunability of domain wall nanoelectronics.

Graphical abstract: Conduction control at ferroic domain walls via external stimuli

Supplementary files

Article information

Article type
Communication
Submitted
17 Jun 2014
Accepted
07 Jul 2014
First published
08 Jul 2014

Nanoscale, 2014,6, 10524-10529

Author version available

Conduction control at ferroic domain walls via external stimuli

J. C. Yang, C. H. Yeh, Y. T. Chen, S. C. Liao, R. Huang, H. J. Liu, C. C. Hung, S. H. Chen, S. L. Wu, C. H. Lai, Y. P. Chiu, P. W. Chiu and Y. H. Chu, Nanoscale, 2014, 6, 10524 DOI: 10.1039/C4NR03300K

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